U. S. DEPARTMENT OF COMMERCE COAST AND GEODETIC SURVEY COASTAL CURRENTS ALONG THE ATLANTIC COAST OF THE UNITED STATES By F. J. HAIGHT SPECIAL PUBLICATION No. 230 U. S. DEPARTMENT OF COMMERCE JESSE H. JONES, Secretary COAST AND GEODETIC SURVEY LEO OTIS COLBERT, Director Special Publication No. 230 | COASTAL CURRENTS ALONG THE ATLANTIC COAST OF THE UNITED STATES By LN F. J. HAIGHT erie \ \ Pe ~ Ye, * Mathematician eo ¢y > ; Division of Tides and Currents Pa >, men, ¢ HIM Libra | 10000829 | MBLWHOI | 00301 tM UNITED STATES GOVERNMENT PRINTING OFFICE WASHINGTON : 1942 PREFACE At the beginning of practically every hour that has passed during the last 30 years, measurements of the direction and velocity of the current have been made at one or more of the lightship stations along our Atlantic coast. The Lighthouse Service for many years coop- erated with the Coast and Geodetic Survey in securing the current observations, and the Coast Guard, which now operates the lightships, is helping to add to our knowledge of the complex movements of coastal waters. The purpose of this volume is to make available in convenient form for the use of the mariner, the scientist and the general public the data derived from analyses of the current observations. In addition to the data derived from the relatively long series of hightship observations, results from numerous short series secured in the vicinity of Georges Bank are incorporated in the current charts for that area, which are included in this volume. The section on the general characteristics of tidal currents, which in this volume precedes the discussion of the observational material, was taken from Tides and Currents in New York Harbor, United States Coast and Geodetic Survey Special Publication No. 111, Revised (1935) Edition. In connection with this publication attention is invited to Coast and Geodetic Survey Special Publication No. 121, Coastal Currents Along the Pacific Coast of the United States, which discusses current observations taken at lightships along that coast; and to the followmg publications which give observational current data for waterways along our Atlantic coast: Tides and Currents in New York Harbor (1935); Tides and Cur- rents in Delaware Bay and River (1926); Tides and Currents in Boston Harbor (1928); Tides and Currents in Portsmouth Harbor (1929); Tides and Currents in Chesapeake Bay (1930); Tides and Currents in Long Island and Block Island Sounds (1932); Tides and Currents in Hudson River (1934); Currents in Narragansett Bay, Buzzards Bay, Nantucket and Vineyard Sounds (1938); Currents in St. Johns River, Savannah River, and Intervening Waterways (1938). Attention is invited also to the annual Current Tables, Atlantic Coast, North America. These tables contain data from which daily predictions of the current may be readily obtained for numerous locations. CONTENTS Tidal currents, general characteristics: ID EhimiGi Onset wee ee pees NE Peis teks eet amet). ete eee Dak phe Reversine tidalucurrentSoss2s- sec eee ee sen = = eee ne eee ae OSE Variationsmnistreng thiol icurrentiese. == eee ae eee eee iy pesiolsreviersin @currents oe ose a Se ee ee ee ee Relation of time of current to time of tide_____----__-------------- Distance: travelediduring.a)tidal cycles=--=— => - =- === =- = ae ee Durationtotuslackeee am ine ee eee eet A eee bee be ee Se Pe Welocitysolicurentrands progression of tidelss ==) 42 52 4822-48 Rotaryatidalucunrentswyse ere Sots barre phe sree Pe ag eae a SE ae Effects of nontidal currents on rotary currents____---------------- Harmoncrconstantss a. Se iie 55 anode are Rey de ee ean beer Meanevalics mee ea ee er ee esos Deke Le OE Se aS SUfra tengo) LU i Mas pate heen wy DEE Rn apa fee we od ee FS IMIG FiO GRO fO I SC Tavs fetes eee ee a ge ee RE rt Methods of reducing the observations_________------------------------ Rreliminanyistatem entsese— 22 —-paf as Sah eee ee ee eee Nonharmonice reduction of reversing tidal currents__--------------- Nonharmonic reduction of rotary tidal currents__..._-.------------ Fano Mi CEreG Wei OMe ee Maer E esa Se REAL ae iyo ee INiombiclaleumnemtire Gi Ci @ rae ae ay ve a ce a WaIndrcurnrent sreductioniey = ie sa alee Ne = Be eee. BresentationOnithesnesuligs= = == ==. 26 — cee oe oe ee eee ee eee WOCATIOM SHO fas Ca tl O11 sme es ey pe ey yn a ene Pat Lixplanationsotstihextabulan data eee e == ase ne ee JOSAH Of UNS LAGOON CON. oo Soe ope eee soe eeeeeeseace The Gulf Stream at Diamond Shoal Lightship____._--__----------- Current charts, Georges Bank and vicinity___________--_------_--- NanGlexcerataen pet rakee eJAvas SAE ERO TS ICM PT SR) On TA ee oe 9 Fe Ub WCationsenOtiCeste ee ase See Ee TERT ED hh SE nied ee) ee ILLUSTRATIONS Figure — bt . Current.curve, The Narrows, New York Harbor___--.------------- . Effect of nontidal current on reversing tidal current__-____________- . Curves of daily and mixed types of reversing currents_____________- Tide and current curves, The Narrows, New York Harbor__-____-__-_- Rotary current; Nantucket Shoals Ihightship_225222 252 222-0522 2222 Mean current curve, Nantucket Shoals Lightship_________________- . Effect of nontidal current on rotary tidal current________________-- . Tidal currents at lightship stations, Cape Elizabeth to Point Judith__ . Tidal currents at lightship stations, Montauk Point to Barnegat Bay _- . Tidal currents at lightship stations, Cape May to Cape Hatteras____- . Tidal currents at lightship stations Cape Lookout to Charleston iar bOrnstaw. Gear: pia b Bei, wigs Dx se eee ers Ui | ahead fie ier 4 Pps euldey s hep queys pare . Tidal currents at lightship stations, Port Royal Sound to St. Johns RIV OT eee ee ae Sy SNE Te Ohi) asl aad cs Uy ed pie Hoge Pothier By puns . Nontidal currents at lightship stations, Cape Elizabeth to Point Judith- . Nontidal currents at lightship stations, Montauk Point to Barnegat Bayer te Se eee aes 2 eat eipst Samyvey. nisin lik spre neh epee sei pe . Nontidal currents at lightship stations, Cape May to Cape Hatteras__ . Nontidal currents at lightship stations, Cape Lookout to Charleston AE OLMeo et ee a Soe E a TEN Ce Pople e Seer yee ait kere bike IV CONTENTS Figure 17. Nontidal currents at lightship stations, Port Royal Sound to St. Johns 18. 19. 20. 21. 22. 23. 24. 25. 26. 27. 28. 29. 30. ae 32. 33. 34. 35. — ono NN DD OPwh Rivieric Mae S222 2 bi) S 28 ee ae es a eee evn ee Bg Wind currents at lightship stations, Cape Elizabeth to Point Judith___ Wind currents at lightship stations, Montauk Point to Barnegat Bay __ Wind currents at lightship stations, Cape May to Cape Hatteras______ wing currents at lightship stations, Cape Lookout to Charleston Har- OP eck sou DUN pe es 2S Se ee age ego 2 oe Rivers 22 2s eee ees eo eee Se ee An, Currents at time of Greenwich transit (2 hours 30 minutes after low water‘at Boston)icecorce Les Gos. Ae = Colbie arp bei oS a oo Currents 1 hour after Greenwich transit (2 hours 45 minutes before high water, at Boston)... 26 eileen Dee Currents 2 hours after Greenwich transit (1 hour 45 minutes before highswater’at Boston)". See Aaa 8 ee anes ta Currents 3 hours after Greenwich transit (45 minutes before high water at Boston), 2 = 2 a ee ie Be oe eer fy Baler Currents 4 hours after Greenwich transit (15 minutes after high water at Boston): 22) 5222-224 SRtS Bes pepeemiegceny han A peirs pth ae Currents 5 hours after Greenwich transit (1 hour 15 minutes after high water.at Boston) 2.2. ates ts Se eee eee | he ee Currents 6 hours after Greenwich transit (2 hours 15 minutes after high Wwaverat. BOstomn),-5 34-88 os ee ge ee eee Currents 7 hours after Greenwich transit (2 hours 55 minutes before low water at’ Boston) £40) JEM Of e! Perea SA Pee eee Currents 8 hours after Greenwich transit (1 hour 55 minutes before low water:at Boston) -2---o--er eor Lee Currents 9 hours after Greenwich transit (55 minutes before low water at Boston) io a Eee Currents 10 hours after Greenwich transit (5 minutes after low water at Boston) 2s 2 2 Pan ee Currents 11 hours after Greenwich transit (1 hour 5 minutes after low water at Boston) = 22-5 sre he EE eae eee Currents 12 hours after Greenwich transit (2 hours 5 minutes after low water'at) Boston) = 22225 se ee eee eee TABLES . Atlantic Coast lightship current stations, depth of water and distance fromuland: }.. 5 a4: Ses oak a a ee el . Observed currents, Atlantic Coast lightships, strengths and slacks_-___ . Tidal currents, Atlantic Coast lightships, strengths and slacks__-______ . Tidal currents, Atlantic Coast lightships, strengths and minimums____ . Hourly velocities and directions of the tidal current, Atlantic Coast lightshipssj= o- (t2)2 6322 See Les hae eee es 5 ee . Times of high water and low water at locations along the Atlantic Coast off the United! States 252 2s a pr se eee ee . Current harmonic constants, Atlantic Coast lightships, north and east Componentste851 U2 Uke ate 2E oeeee Eh eee Se . Current harmonic constants, Atlantic Coast lightships, 369-day series_ . Current harmonic constants, Atlantic Coast lightships, series less than 10. SOO dayse 2.5. Ey ak Pe es Sees: ny Ore Hourly directions and velocities of the solar diurnal current, Atlantic Coastilightshipsso22 2 32 ye yee yen pete ge eel Se ee . Nontidal currents by months, Atlantic Coast lightships____________ . Wind. currents, Atlantic Coast lightshipss i- 44 2/2o:.- 1. ee 150 Sy | Scotland 2. = sees os. eee 63 3 U.S. 8S. Easthampton ____-___- 90 TGR saber aie see eee ee eee 78 fi (BOStO 1) sae er ee 108 Sy | MUSeiSs falcons 2222 ses 180 47 Pollock Ripislues a o= 2-5 46 3) || MNortheasteEinda= 2-255) —-- = 84 13 Pollock Rip (1934-35)_________ 60 5 || Five Fathom Bank______-_-__ 91 16 Stone Horse Shoal (1934-36) ___ 84 1 | |\Owenfalls = % <5 esse Sl 66 3 Shovelful Shoal______________- 78 1 || Fenwick Island.Shoal. _______ 90 13 Stone Horse Shoal (1918-19) ___ 27 1 || Winter-Quarter Shoal________ 78 16 Pollock Rip (1911) ___-_-_---_- 34 fla LOS S371 1) Ree es ee 180 44 Great Round Shoal______- 72 5. || Cape'Charlest.-425--22 sees ee 39 7 Nantucket Shoals__-___ 180 41) '}) Chesapeakes 2s = 2s). eee. 63 12 Handkerchief____-_ 49 4 || Tail of the Horseshoe______ a 36 3 Cross Rip__ 42 6 || Diamond Shoal (1909-18) _____ 180 13 Hedge Fence_ 54 3 || Diamond Shoal (1919-28) _____ 174 13 Vineyard Sound ___ 102 3 || Cape Lookout Shoals (1912) __ 78 17 Hen and Chickens_ 60 2 || Cape Lookout Shoals (1918— Brenton Reef____- 84 1 19) eae 90 19 Ram Island Reef_ 60 1 Hie ing Pan Shoals. _ 60 18 Bartlett Reef____- 64 2 S. Lona Island_ 90 22 Cornfield Point__ 162 3 Chirleston (1912-16) _ 39 7 UE:S.iS. hinch-— = 180 39 || Charleston (1921) ___- 42 8 ire Island 3-2 22 96 9 || Martins Industry ___ 52 11 Uns. SsGardinit] Se 120 21 We Savanriiahiss. 2aee2 2s 48 10 Ambrose Channel (1912-22) ___ 78 6 ||| Brunswick? = 22 ==- = - 2 50 13 Ambrose Channel (1936-38) ___ 78 Chl Wnksp toca) OOK AS ee Sees ae Re ee 57 5 For reference to above table, see p. 20. o1eety “sesayjey ade 0} Aew ede ‘suojje}s diysyySi| ye Sjuesino jepit OT “Bid 08 sapiey) ade> eyeedesoy>) 18245 Pp eoys puowesg O ‘yuaciad OZ ynoge jo ueaW e4y BAoge aseasou! SVEALIVA Adv AYIOLOA @ Bujonposd yoea ‘jenba Ajjeoijoesd ase sjoajja ueaBiuad pue Builds BY) SAIS Paul) ay} JO JseOd JjUeNy ay) Buoyy “SWesBelp ayy Aq payesipuy @S0\) UeY) S89) Sap!} URABOde pue sap!) deau jo Saw) je puk Jajeass ase Ajjew “JOU SA\}J90j9A JUaLUND jeply a4) Sap!) 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Coast and Geodetic Survey. i Monomoy Pt 1,2 NANTUCKET _g => 2 SOUND Shoal sas) SOU ee \ ‘Roseand | Crown ‘ 90 fathoms > 18 \ TEN _ Davis South Shoal > = A-1380-0 Fig. 23 Currents at time of Greenwich transit (2 hours 30 minutes after low water at Boston). — are | \ TIDAL CURRENTS _ GEORGES BANK AND VICINITY y BAY / £ Red arrows and figures denote the observed direction | and average velocity in knots of the current at time stated / at bottom of chart. Predicted times of high and low waters for Boston c are given in the Tide Tables, Atlantic Ocean, published “>>> annually by the U. S. Coast and Geodetic Survey. Monomoy Pts 0.9 wantucker *' SOUND f [= ‘ Davis einteasial % fi Oa 2 * o” ax 20 fathoms, - ck fos! [70° A-1380-0 Fig. 24 Currents 1 hour after Greenwich transit (2 hours 45 minutes before high water at Boston). CAPE COD BAY Monomoy Pt On4 0.6 NANTUCKET _ oy 1.0 _ sounp == “og, gee f 0.8 7 e \eiem Great Round O.Ghoat 7 TIDAL CURRENTS 4 |, GEORGES BANK AND VICINITY Red arrows and figures denote the observed direction and average velocity in knots of the current at time stated at bottom of chart. Predicted times of high and low waters for Boston are given in the Tide Tables, Atlantic Ocean, published annually by the U. S, Coast and Geodetic Survey. ' 1 1 Davis South Shoals, ~ => ‘s 20 fatho™ _.30 fathoms. | Middle Rip Fig. 25 Currents 2 hours after Greenwich transit (1 hour 45 minutes before high water at Boston). 4-1380-0 CAPE COD BAY # jarnatable a P fc 0.9 Great Round Shoal He 2 “oms- / Fishing Rip; | ‘~, GEORGES BANK AND VICINITY TIDAL: CURRENTS § /2 Red arrows and figures denote the observed direction and average velocity in knots of the current at time stated at bottom of chart. Predicted times of high and low waters for Boston are given in the Tide Tables, Atlantic Ocean, published annually by the U. S. Coast and Geodetic Survey. Sli etl F ae) pati 1 ‘ ve (ON f Diva Sou Shoal, a ee i a Hidite Rip > : i. ty | 4p 1) iAsia. Rep Fig. 26 Currents 3 hours after Greenwich transit (45 minutes before high water at Boston). A-1380-0 TIDAL CURRENTS CAPE COD ' BAY - (Op NquserHbr \ } H \ Red arrows and figures denote the observed direction and average velocity in knots of the current at time stated at bottom of chart. ' H Predicted times of high and low waters for Boston are given in the Tide Tables, Atlantic Ocean, published ~ annually by the U. S. Coast and Geodetic Survey. Monomoy Pt 08 NANTUCKET a e 0.0 SOUND Wanton $2 NANTUCK! ,, GEORGES BANK AND VICINITY — 11 = 39 fathoms -Paavis South Shoal? Ao eo, Tae + Asta Rep 5 20 atho™ 30 fathoms _ Fig. 27. Currents 4 hours after Greenwich transit (15 minutes after high water at Boston). A-1380-0 CAPE COD BAY Barnstable’ 7s Ff | Monomoy Pt 1.8 05 SOUN: OUND #4 /Sonkaty Hd. NANTUCKET 1. 1.2 NAN TUCKEY are 1 3Shoat Be ‘an,, GEORGES BANK AND VICINITY _ ) Red arrows and figures denote the observed direction and average velocity in knots of the current at time stated at bottom of chart. Predicted times of high and low waters for Boston are given in the Tide Tables, Atlantic Ocean, published annually by the U. S. Coast and Geodetic Survey. ; Fishing Rip; : ; Pe Nude ato a 1 \ V5 y” ec ‘an ‘ : ( } t : a Widdle Rip Davis South Shoals, pi Me , > ' toa igh Asia Rip _-50 fathoms. _ Fig. 28 Currents 5 hours after Greenwich transit (1 hour 15 minutes after high water at Boston). a a, ! TIDAL CURRENTS fr, of {%, GEORGES BANK AND VICINITY ‘ “homs- i / { Red arrows and figures denote the observed direction | and average velocity in knots of the current at time stated at bottom of chart. Predicted times of high and low waters for Boston are given in the Tide Tables, Atlantic Ocean, published ~~>~ annually by the U. S. Coast and Geodetic Survey. Monomoy Pt 1 . eet Rip 13 aot NANTUCKEL_ A ss, 5 CHS) ee 1FShoal = SOU! Orion Sloat. ro) Fishing Rip; sy { bce Rip Diavis South Shoal 7 “ES 50 fathoms. _ _-30 fathoms Fig. 29 Currents 6 hours after Greenwich transit (2 hours 15 minutes after high water at Boston). CAPE COD BAY * Gammon 1.1 NANTUCKET. 9 La SOUND Great Round Shoal i TIDAL CURRENTS ,,GEORGES BANK AND VICINITY — / Red arrows and figures denote the observed direction I and average velocity in knots of the current at time stated at bottom of chart. Predicted times of high and low waters for Boston are given in the Tide Tables, Atlantic Ocean, published - annually by the U. S. Coast and Geodetic Survey. Orion Shgal AN »° Davis South Shoal t> pom ek Middle Rip — =i ‘got ey SO Avia Rip 30 fathom, =~ annually by the U. S. Coast and Geodetic Survey. ! 1 1 0.6 DUES are Great Round << —2=' SOUND 0 _-30 fathoms A-1380-0 Fig. 31 Currents 8 hours after Greenwich transit (1 hour 55 minutes before low water at Boston). TIDAL CURRENTS {o GEORGES BANK AND VICINITY homs- } H / Red arrows and figures denote the observed direction and average velocity in knots of the current at time stated at bottom of chart. Predicted times of high and low waters for Boston are given in the Tide Tables, Atlantic Ocean, published ~>=~ annually by the U. S. Coast and Geodetic Survey. ' 1 1 i \ 1 wee } - Monomoy Pt 1.0 0.0 NANTUCKE e 5 Great Round Shoal SOUND -_o aux -go fathoms / rooN Davie South Shoa Re > 50 fathoms. _ _~50 fathoms Fig. 32 Currents 9 hours after Greenwich transit (55 minutes before low water at Boston). pe TIDAL CURRENTS {%,, GEORGES BANK AND VICINITY > “ho - y ¢ Red arrows and figures denote the observed direction | and average velocity in knots of the current at time stated *-~ at bottom of chart. Predicted times of high and low waters for Boston y are given in the Tide Tables, Atlantic Ocean, published ~>=~ annually by the U. S. Coast and Geodetic Survey. f { ‘ ' \ Monomoy P94 0:5 NANTUCKEL_¢—> 0.2 — sounp ss 1.3 gco—b0 fathom. 1.2 os i E = Q Middle Rip yo Diavis South Shoal, / tit am j } oS s* %& @ ) ae a) <. (50 fathoms. __ 20 fatho® thoms _~ 30 fathoms _ 07 : Fig. 33 Currents 10 hours after Greenwich transit (5 minutes after low water at Boston). CAPE COD BAY Monomoy Pt 2G 1,0 NANTUCKET 0.7 — ae 5 OUN, 0 op SOUND GEORGES BANK AND VICINITY — t Fishing Rip rh TIDAL CURRENTS Red arrows and figures denote the observed direction and average velocity in knots of the current at time stated at bottom of chart. Predicted times of high and low waters for Boston are given in the Tide Tables, Atlantic Ocean, published annually by the U. S. Coast and Geodetic Survey. as Middle Rip Davis South Shoals, > got oy xo | Aria Rip x Fig. 34 Currents 11 hours after Greenwich transit (1 hour 5 minutes after low water at Boston). _- 50 fathoms. _ TIDAL CURRENTS CAPE COD a ct 1%,, GEORGES BANK AND VICINITY I y ( Red arrows and figures denote the observed direction yj and average velocity in knots of the current at time stated at bottom of chart. Predicted times of high and low waters for Boston are given in the Tide Tables, Atlantic Ocean, published »~ annually by the U. S. Coast and Geodetic Survey. a . [gt Fa Davie South Shoal %y, > ee 50 fathoms._ _30 fathoms _ Fig. 35 Currents 12 hours after Greenwich transit (2 hours 5 minutes after low water at Boston). ne ee a ty he aputers ANS Cask ge ty «| , ere S / rear s VHete My / rE ‘iu , ‘ ~ fie thu vf l A ‘ : - ' \ tal ol i m us Ce am aS *) =~ > 4 a af : lw 7 ‘ : ; e iN omit, 971 te rwnneed iy - | i, . 7 | Coach ant | Soe ARO, ea! ; ined ¢ | ’ '; BY eck 4 Cw Moe, : ‘ —_— r ahead ee : 4 Vere’, ala, . j =| . ™ [ rl sawatd ) , y = i ére -. a bev wee dh 3 A if | ret) ie 7 ; ; - YR vata Nt wetan® el Ag FS baer? 7 a f "4 on y : y iy , y; : t] \ > ¢ ? . ean a? IK) 4 \ vA ante A Lea? ~| ‘ » a Ps GA or, } ad ¥ ‘een 3: oo 7 Ca ret hour cdl G ; : ’ ~, % ha j q 5 | Eo ices he | ’ Fe : ' Ais} . f ; : W ———— ae one _ vi oe Sie eis TaBLeE 2.—Observed Currents, Atlantic Coast Lightships, Strengths and Slacks {Referred to Greenwich transits] Lightship and location Pollock Rip Shue (417361.7 Ni, 69°63'.8) W..)=---------=-- = = Pollock Rip (1934-35) (41°36’.1 N., 69°51’.1 W.)_---_--.-_-----_- Stone Horse Shoal (1934-36) (41°32’.8 N., 69°59’.1 W.)__________- ShovelfulliShoali(41°32/27 IN).,69°59'-3 W.)=_---_-.----_*_---_ | Stone Horse Shoal (1918-19) (41°32’.4 N., 69°59’.2 W.)____-_____- Handkerchief (412207.3Ni5 9702040) Wi.) --------. -----------_. =. Crossan Gic2beOuN, MOctiebuW i.) seseae =o s- see asoee Sap ea ene Hedsa mene (41oZs/cavNy, m0e20).0 Wh)ece.s-o-o-2te-sce-eeae ne Brentonunech(4legnZOyINi wdiewecO Wilno- ee saeco cao-2-- sce s- Ram Island Reef (1913) (41°18’.2 N., 71958’.5 W.)_------_-_-____ Ram Island Reef (1915) (41°18’.0 N., 71°58’.5 W.)------------__- Bartlett Reef (41°16’.2 N., 72°07’.7 W.) Cornfield Point (1913) (41°12’.9 N,, 72722/.6, W.) Cornfield Point (1922) (41°12’.9 N., 72°22’.2 W.) Observations Date Dec. 1918-July, 1921___ Aug. 1934-Aug. 1935 ___ Aug. 1934-Aug, 1936__- Sept.—Dec., 1913_______ Dec. 1918-Aug. 1919___ June-Sept., 1911_______ Aug. 1934-Aug. 1935___ Sept.—Dec. 1913______- Aug. 1934-Aug. 1935___ Sept.—Dec., 1913__ ____- Oct:=Dee:, 1913.__-_-_ = June-Oct., 1919__.____- July 1930-July, 1931____ Sept.-Dec., 1913_______ July-Oct., 1915_______- Sept.-Dec., 1913_______ Aug. 1929-Mar. 1930___ Sept.-Dec., 1913_____-- Aug-—Nov: 1922: -2---* Aug. 1929-Dec. 19380. _- Peri- od Flood strength Direc- Time | tion (true) Hours after De- G. T. | grees 9.78 8 10. 61 16 25 37 11. 26 52 11.37 60 12. 34 94 0. 02 80 0.77 102 0. 65 91 1.41 108 10. 29 356 10, 31 353 10. 83 343 0. 20 253 0. 23 258 0. 35 260 0.18 255 0.71 257 0.78 261 0. 76 254 Knots | Hours 1. 67 5. 60 5. 89 6. 54 6. 23 6. 56 6. 35 6. 26 6. 61 6. 70 6. 41 6. 22 6. 54 6. 22 6. 01 6. 03 6. 20 6. 85 6. 63 6. 83 6, 71 Slack Hours | Hours after Gar 0.19 Ebb strength Direc-| Ve- Time | tion loc- (true) | ity after G.T. 3. 48 4, 24 4.76 4.95 5. 04 5. 55 5.78 6. 86 6.79 7.53 3. 80 3.70 3. 73 6. 17 6. 21 6. 65 5. 51 6. 73 6. 78 6, 65 De- grees 197 202 226 227 240 243 251 271 272 268 175 156 174 86 90 112 90 90 86 98 Ebb dura- tion Knots | Hours 1, 94 1, 33 1,78 2. 29 2, 44 1, 66 1, 28 0. 98 0. 93 1, 24 0. 70 0. 53 0. 60 1. 58 1, 54 1, 47 1.30 1.65 1, 57 1. 76 6. 82 6. 53 5. 88 6. 19 5. 86 6. 07 6. 16 5. 81 5. 72 6. 01 6. 20 5. 88 6. 20 6. 41 6. 39 6. 22 5. 57 5.79 5. 59 5. 71 _LSVOO OLLNVILV ‘SLNGYYNO IVLSVOO LG U. 8S. 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S. COAST AND GEODETIC SURVEY TaBLe 6.—Times of High Water and Low Water at Locations Along the Atlantic Coast of the United States [Times in hours and hundredths are referred to Greenwich lunar transits] High water| Low water . . occurs after) occurs after Tide stations Greenwich | Greenwich transit transit Flours Hours Portland, Maine________- 3. 59 9. 76 Boston, NMiasss 5 ae 3.76 9. 93 Newport, uh plese 0. 25 5. 85 New London, Conn____-_- 2.00 8. 52 Sandy Hook, N. J_______- 0.32 6. 68 Tide stations Breakwater Harbor, Del-_ Hampton Roads, Va____- Charleston, S. C Tybee Light, Ga Mayport, Fla_____-_- High water} Low water occurs after|occurs after Greenwich | Greenwich transit transit Flours Hours 1.03 Tes: 1.70 8.00 0. 51 6. 64 0.34 6. 66. 0.93 7.04 For reference to above table, see p. 21. TaBLe 7.—Current Harmonic Constants, Atlantic Coast Lightships [North and east components] North component East component North component East component (magnetic) (magnetic) (magnetic) (magnetic) Epoch Epoch Epoch Epoch Constituent Veloc- 7S S| VO SS lOve —| Veloci- = "Y | Local |Green-| !Y | Local |Green-|| #tY | Local |Green-| 4#Y | Local | Green- cenots)| © | wien [ats] O | wieb lati] GO | wich lado) @ | wie O'S)! (de- | (de- =)! (de- | (de- ° (de- | (de- (de- | (de- grees) | grees) grees) | grees) grees) | grees) grees) | grees) Boston Lightship Pollock Rip Slue Lightship 369 days beginning June 8, 1926. Mag- 369 days beginning June 5, 1920. Mag netic variation 15° west. netic variation 15° west Sees 0. 011 56 127 | 0.015 178 249 || 0.030 157 227 | 0.010 166 236, gt oe 2. eee 0. 003 9 151 | 0.009 130 272 || 0.068 192 332 | 0.044 207 347 ig ee ee 0. 003 322 104 | 0.002 56 198 || 0.098 206 346 | 0.068 207 347 1 ie Se eee 2 0. 001 189 260 | 0.002 163 234 || 0.014 128 198 | 0.008 8 78 i ee Sie Rae 0.013 269 51 | 0. 080 57 199 1, 152 165 305 | 0.672 176 316 Mig oh 0. 003 144 356 | 0.006 260 112 || 0.006 df 217 | 0.004 32 242 14 oe ee ee eo 0. 006 254 177 | 0.002} 228 151 0. 062 22 302 | 0.052 149 69 Magan. s 0. 001 268 333 | 0.003 i) 74 || 0.044 143 202 | 0.050 151 210 Mg. 32 eS 0. 002 298 144 | 0.003 37 243 || 0.004 263 102 | 0.008 65 264 Ng. ae 0. 004 247 29 | 0.022 21 163 || 0.182 126 266 | 0.110 135 275 Ores 2.-.| 0.003 72 143 | 0.007 238 309 || 0.010 122 192 | 0.006 5 75 1 eee Sees eS 0.011 38 109 | 0.004 145 216 || 0.030 187 257 | 0.010 206 276 Oi aes 0. 008 71 142 | 0.002 203 274 || 0.006 129 199 | 0.008 12 82 Sih es 0. 022 74 145 | 0.024 164 235 || 0.024 83 153 | 0.012 132 202 Speen hae ae 0. 003 221 3; 0.016 75 217 || 0.124 179 319 | 0.084 192 332 Migs 10008 222 4 | 0.003 | 63 205 || 0.052 0 140 | 0.032 348 128 See ee SER STD 152 152 | 0.021 35 35 0. 024 145 145 | 0.064 307 307 S88 ee ee OO 24 79 179 | 0.011 143 143 || 0.020 338 338 | 0.020 108 108 | Nantucket Shoals Lightship Nantucket Shoals Lightship 369 days beginning September 27, 1913. 369 days beginning Apri] 16, 1921. Mag- Magnetic variation 14° west | netic variation 14° west 1 ee See 2 0.115} 341 51 | 0. 153 77 147 || 0.125 334 44 | 0.157 81 151 eee SS SG 0. 021 266 45 | 0.024 345 124 || 0.040 285 64 | 0.037 339 118 igs See 0. 055 255 34 | 0.028 331 110 || 0.089 312 91 | 0.034 20 159 IMF ee eee 0. 004 306 16 | 0.007 16 86 || 0.016 351 61 | 0.018 40 110 Mig. ee oe 0. 539 241 20 | 0. 555 306 85 || 0. 703 235 14 | 0.742 302 81 Migcee eae a 0.010 301 150 | 0.010 28 237 || 0.002 310 159 | 0.004 153 2 Vg ae ee 0.010 352 270 | 0 004 122 40 || 0.026 356 274 | 0.026 114 32 ay (ie a se 0.011 199 257 | 0.010 317 15 || 0.009 192 250 | 0. 007 269 327 Migefy. 26. Bet 0. 002 62 259 | 0.006 141 338 || 0.003 306 143 | 0.003 352 189 InP a 0. 124 212 351 | 0.130 280 59 0.179 196 335 | 0.177 270 49 Ope ie Fat at 0. 067 293 31) OF 180 43 113 || 0.097 300 10 | 0.112 43 113 1 Epes 0. 026 338 48 | 0.042 75 145 || 0.034 296 6 | 0.0389 31 101 Ope ee E0004 313 23 | 0.007 3 73 || 0.034 212 282 | 0.023 332 42 Sis ee eee ee 0. 017 303 13 | 0.013 57 127 || 0.029 295 5 | 0.034 124 194 Saree fee Soe 0. O87 277 56 | 0.096 341 120 |} 0.111 261 40 | 0.127 333 112 Muz_________| 0.022 130 269 | 0.010 250 29 |} 0.012 105 244 | 0.016 167 306 Dabstsce 5-4 0. 098 113 113 | 0.071 339 339 || 0.123 125 125 | 0.137 287 287 oh eae Ga S 0. 022 300 300 | 0.050 199 199 0. 022 185 185 | 0.092 290 290 COASTAL CURRENTS, ATLANTIC COAST Oo” TaBLeE 7.—Current Harmonic Constants, Atlantic Coast Lightships—Con. North component East component North component East component (magnetic) (magnetic) (magnetic) (magnetic) a Epoch Epoch Epoch Epoch Constituent Veloc- |— Se VI CLOG= i aaa Veloc- Veloci- nw Local Green: ae ie Green- a cal Green: ao Tel Green; iE K wie. t! Kk) wic ” kK wie ¥ «) wie (knots) (de- (de- (knots) (de- (de- (knots) (de- (de- (knots) (de- (de- grees) | grees) grees) | grees) grees) | grees) grees) | grees) Hen and Chickens Lighiship Brenton Reef Lightship 369 days beginning September 1, 1930. 369 days beginning July 28, 1930. Mag- Magnetic variation 14° west netic variation 14° west Geeta ae 0. 014 13 84 | 0.032 26 97 || 0.039 0 71 | 0.013 7 141 IKOW eet a) = 0. 017 148 290 | 0.025 Wee 319 0. 020 192 335 | 0.010 160 303 He gu iape ee Soi 0. 008 352 134 | 0.021 17 159 |) 0.030 135 278 | 0.017 96 239 1M (ys eae eae 0. OOL 265 336 | 0. 001 96 167 || 0.005 289 0 | 0.004 67 138 Vig e ee 0. 224 133 275 | 0.356 182 324 0. 440 146 289 | 0.025 141 284 Mga een oa 0. 002 164 17 | 0.007 146 359 || 0.002 136 350 | 0.007 263 117 TY [7 ae eee 0. 027 45 329 | 0.062 68 352 || 0.089 68 354 | 0.017 189 115 Might eee 0. 021 156 222 | 0.013 122 188 || 0.026 161 229 |} 0.014 149 217 [Nigteserice eal! 0. 009 130 338 | 0.005 6 214 || 0.010 194 45 | 0.003 142 353 IN [py Se ei 0. 060 105 247 | 0.111 155 297 || 0.113 134 277 | 0::022 182 325 Os 0. O11 40 lil | 0.017 26 97 || 0.023 25 96 | 0.003 51 122 1 Sree RN 0. 010 37 108 | 0.016 38 109 |) 0.025 4 75 | 0.026 78 149 Or See es 0. 002 135 206 | 0.006 40 11L 0. O11 5 76 | 0.004 65 136 Sienna | 0. 027 64 135 | 0. O11 90 161 0. O17 37 108 | 0. 031 81 152 Sonera Stee ot 0. 060 155 297. | 0.085 192 334 || 0. 102 164 307 | 0.022 183 326 IMAG pS SE Release 0. 021 81 223 | 0.032 123 265 || 0.021 146 289 | 0.003 62 205 Sami ee ees = 0. 019 186 186 | 0.047 260 250 |) 0.051 110 110 | 0.059 181 181 Ssa___ 0. 017 135 135 | 0.026 136 136 0. 008 97 97 | 0.003 18 18 Fire Island Lightship Barnegat Lightship 369 days beginning July 2, 1938. Magnetic 369 days beginning February 1, 1935. variation 12° west Magnetic variation 10° west Ey aren eet et 0. 016 65 138 | 0.042 167 240 |) 0.011 268 342 | 0.012 221 295 DERG yop ae es Sy 0. 007 184 330 | 0.013 312 98 || 0.003 73 221 | 0.003 174 322 1D psa ee 0. 002 269 55 | 0.003 311 97 || 0.003 179 327 | 0.003 15 163 Myer ie 0. 002 2 75 | 0.005 76 149 || 0.003 22 96 | 0.003 145 219 BN, [pe RE Set 0. 042 141 287 | 0.124 303 89 |) 0.047 148 296 | 0.029 286 74 VIG Ke Sirens 0.002 ; 130 BO) OL OOO ges ul ee 0. 002 226 SSH ON OOOM | erasers | pores 1M PRS secon 0. 004 206 139 | 0.009 6 299 || 0.002 122 58 | 0.005 332 268 Vigecera ne | 0. 003 54 133 | 0.004 54 133 || 0.002 93 177 | 0.001 3 87 IM (Gaus Be 0. 001 312 178 | 0.002 12 238 || 0.002 4 235 | 0.001 304 175 IN [eas OS 0. 007 106 252 | 0.033 282 68 || 0. 007 144 292 | 0. 004 203 351 Oyen seer ae 0. 011 100 173 | 0.027 143 216 || 0.016 156 230 | 0.012 182 256 Tey er ah ep eens 0. 016 2, 85 | 0. 028 108 181 || 0.007 45 119 | 0.011 142 216 KO) se eal ee 0. 004 177 250 | 0. 008 153 226 || 0.007 86 160 | 0.006 95 169 Sees eae 0. 036 37 110 | 0.044 114 187 |) 0.016 80 154 | 0.026 136 210 Sa es iner 0. 015 185 331 | 0.026 323 109 || 0.014 170 318 | 0. 006 295 83 IMT ee 0. 005 121 267 | 0. 007 280 66 || 0. 002 118 266 | 0. 004 185 333 Dae eee te wee. i 0. 019 15 15 | 0.012 37 37 || 0. 052 128 128 | 0.017 118 118 SSaweee ase 0. 023 145 145 | 0.081 204 204 |! 0.013 295 295 | 0.017 213 213 Northeast End Lightship Winter-Quarter Shoal Lightship 369 days beginning October 28, 1918. 369 days beginning January 1, 1919. Magnetic variation 8° west Magnetic variation 7° west UG eset Acacias 0. 033 8 82 | 0.010 117 191 || 0.037 45 120 | 0.023 101 176 1G AR ee 0. 013 174 323 | 0.006 346 135 || 0.011 80 230 | 0.008 64 214 Aspe es Pon 0. 008 94 243 | 0.006 309 938i! OOOO s | Sees |e eee 0. 005 256 46 1s See aaa 0.011 99 173 | 0.004 122 196 |} 0.011 246 321 | 0. 003- 226 301 IV ieee fed bes) 0. 103 175 324 | 0.180 319 108 || 0.047 198 348 | 0.046 283 73 Ce) Ei ose 0. 004 305 168 | 0. 001 339 202 |} 0. 004 215 80 | 0.002 263 128 Vig as 0. 002 332 270 | 0.005 15 313 |; 0.003 100 40 | 0.004 137 vai Viigo e Osae 0. 008 268 355 | 0. 002 272 OO MMOS O00} | Pees | penser 0. 001 105 195 DV iigi ideale 0. 004 3 239 | 0.005 355 231 |) 0.002 201 81 | 0.002 280 160 INR eee eee 0. 025 171 320 | 0.034 305 94 || 0.010 154 304 | 0.014 243 33 Oe ae Bea ase 0. 016 224 298 | 0.042 207 281 0. 024 338 53 | 0.023 66 141 dp ye eee Beton as 0. 015 19 93 | 0.015 136 210 || 0.022 118 193 | 0.007 85 160 Oa en oe ea 0. 009 90 164 | 0.014 139 213 || 0.007 159 234 | 0.007 302 17 Sy ee See er 0. 025 90 164 | 0.033 165 239 || 0.033 140 215 | 0.019 218 293 topper aR 0. 024 178 327 | 0.081 339 128 || 0.006 208 358 | 0. 005 345 135 Mitigh aee 0. 001 210 359 | 0.004 14 163 || 0. 004 122 272 | 0. 004 247 37 Sau So aewor a 0. 065 125 125 | 0.021 105 105 || 0.101 122 122 | 0.019 254 254 Ssaue __! 0.932 193 193 | 0.938 230 220 0.020 128 1328 | 0.950 249, 242 38 U. S. COAST AND GEODETIC SURVEY TaBLE 7.—Current Harmonic Constants, Atlantic Coast Lightships—Con-. North component East component North component East component (magnetic) (magnetic) (magnetic) (magnetic) ; Epoch Epoch Epoch Epoch Constituent Veloc- —| Veloc- Veloc- |— Veloci- a Brel wees a ee Green- oe toga Green: 1tY | Local | Green- K wic K wic (k wic (x) wich (knots) (de- (de- (knots) (de- (de- (knots) (de- (de- (knots) (de- (de- grees) | grees) grees) | grees) grees) | grees) grees) | grees) Chesapeake Lightship Diamond Shoal Lightship 369 days beginning March 29, 1935. 369 days beginning January 1, 1921. Magnetic variation 7° west Magnetic variation 6° west Kee ss es 0. 047 103 79 | 0.048 206 282 || 0.018 63 138 | 0.029 5 80 Kae: 2 3 eer: 0. 008 292 83 | 0.016 23 174 || 0.003 162 313 | 0.010 60 211 lope eat Ss! es 0. 015 158 309 | 0. 009 267 58 |} 0.009 93 244 | 0.011 62 213 iy fr ees SS 0. 004 39 115 | 0.003 72 148 || 0.015 66 141 | 0.013 162 237 5 a 0. 036 207 358 | 0.151 22 173 || 0.034 155 306 | 0.027 253 44 Migs) Sato 0. 003 63 290 | 0.004 48 275 || 0.006 263 129 | 0.008 212 78 Mos - 24 -er 0. 003 338 281 | 0.005 283 226 |} 0. 004 110 51 | 0.005 158 99° Wigs a week 0. 004 306 40 | 0.002 152 246 || 0.004 125 217 | 0. 004 1 93 Mig etn eer” 0. 003 30 276 | 0. 004 18 264 |) 0.005 181 64 | 0.005 151 34 INa® a5 ee 0. 006 152 303 | 0.040 355 146 || 0.028 139 290 | 0.015 238 29° (Oe Se 0. 023 66 142 | 0.010 270 346 || 0.030 215 290 | 0.038 285 0 iene eees 0. 030 104 180 | 0.028 188 264 || 0.021 243 318 | 0.014 218 293 (of eee SRT 0. 010 150 226 | 0.009 214 290 || 0.009 3 78 | 0.024 325 40 Sie eee 0. 058 105 181 | 0.044 184 260 || 0.013 33 108 | 0.009 330 45 Sh i pee eo 0. 010 254 45 | 0.035 49 200 || 0.016 104 255 | 0. 004 198 349 Mise See 0. 009 57 208 | 0.009 11 162 || 0.007 140 291 | 0.008 153 304 Bas 2 Vetss | 2 0. 098 93 93 | 0.035 10 10 || 0. 255 129 129 | 0.189 154 154 Sie Se 0. 028 272 272 | 0.024 190 190 || 0.033 316 316 | 0.036 159 159 Diamond Shoal Lightship Cape Lookout Shoals Lightship 369 days beginning January 1, 1922. Mag- || 369 days beginning September 27, 1918. netic variation 6° west Magnetic variation 4° west Kati se ele. 0.018 21 96 | 0.020 359 74 || 0.080 54 130 | 0.0382 190 266 Koes ae 0.005 121 272 | 0.010 236 27 || 0.016 306 99 | 0.022 336 129 L2__- _-| 0.007 115 266 | 0.008 153 304 || 0.005 295 88 | 0.011 322 115 Wie = eee 0. 005 157 232 | 0.010 52 127 0. 012 358 74 | 0.015 95 171 1 een See 0.030 212 3 | 0.026 259 50 0. 069 179 332 | 0.172 283, 76 Wists. 2 eS 0. 006 275 141 | 0.006 345 211 0. 007 256 125 | 0.014 204 73 Wipro a. ees. 0. 001 141 82 | 0.006 149 90 || 0.005 181 127 | 0.011 92 38 Vigra fees 0. 006 200 292 | 0.006 290 22 |} 0.001 54 152 | 0.005 65 163 Maelo ee 0. 003 282 165 | 0.004 305 188 || 0.603 357 248 | 0.003 57 308 Nee 2) 2 eee 2 0.012 188 339 | 0.007 216 7 0.024 174 327 | 0.028 254 AT oO zs 0. 036 172 247 | 0.021 202 277 0. 007 67 143 | 0.017 123 199 i ore ae 0. 013 58 133 | 0.008 96 171 0. 084 112 188 | 0.032 157 233 (2) eee a 0.016 161 236 | 0.014 302 17 0.016 10 86 | 0.013 26 102 Sis > 2 eee 0. 032 67 142 | 0.016 54 129 || 0.046 124 200 | 0.044 198 274 ish ee 0.015 230 21 | 0.007 231 22 || 0.021 173 326 | 0.025 295 88 Wits: See 0. 003 22 173 | 0.007 78 229 || 0.013 4 157 | 0.010 287 80 Sale: eee = 105526 64 64 | 0.325 57 57 0.074 85 85 | 0.091 116 116 Bsa = ee 0. 146 229 229 | 0.111 222 222 0.017 135 135 | 0.070 235 235 Frying Pan Shoals Lightship Frying Pan Shoals Lightship 369 days beginning September 27, 1918. || 369 days beginning January 1, 1920. Mag- Magnetic variation 3° west netie variation 3° west 1 ae ee 0.031 50 128 | 0.080 135 213 || 0.016 44 122 | 0.0385 122 200 1s S|) SON 140 296 | 0.019 275 71 0.014 199 355 | 0.022 281 77 Wig... 9-22 *- - | O2018 145 301 | 0.014 224 20 |} 0.009 276 72 | 0.019 334 130 Nie 5 eee 0. 001 143 221 | 0.011 51 129 |) 0.005 81 159 | 0.010 123 201 Misi 22. ©. Bae 0. 237 142 298 | 0.302 257 53 0. 245 137 293 | 0.308 255 5] Mig. 7 ae 0. 004 80 313 | 0.003 8 241 0. 004 108 341 | 0.011 290 163. Mig fe 0. 007 349 300 | 0.007 6 317 || 0.007 343, 294 | 0.002 32 343 Migen 3. Dae ©) 0. 004 90 197 | 0.004 198 | 305 || 0.003 235 342 | 0.003 272 19 Mig 2 Se 0. 002 150 | 52 | 0.006 180 82 || 0.006 136 38 | 0.003 264 166. INGE ee 0. 057 124 280 | 0.079 244 40 || 0.060 111 267 | 0.059 225 21 Ore = OS0L7 48 126 | 0.028 105 183 0.020 34 112 | 0.029 100 178 Bio aee 0. 005 68 146 | 0.021 144 222 || 0.023 123 201 | 0.014 210 288. (Oy Sees 2 ae 0. 003 129 207 | 0.004 352 70 || 0.009 348 66 | 0.007 285 3 Seto a 0. 053 97 175 | 0.047 174 252 0. 054 108 186 | 0.052 183 261 Sp ees a ee 0. 054 160 316 | 0.068 270 66 || 0.053 162 318 | 0.061 272 68. Mnig 22 9 ee 0. 016 48 204 | 0.005 79 235 || 0.007 139 295 | 0.014 187 343 sty oe 0. 036 95 95 | 0.10) 116 116 || 0.035 128 128 | 0.069 105 105 Ssa__- ON000s pseu 2 Ese ass 0.155 245 245 || 0.020 225 225 | 0.121 202 202 COASTAL CURRENTS, ATLANTIC COAST o9 TaBLeE 7.—Current Harmonic Constants, Atlantic Coast Lightships—Con. North component East component North component East component (magnetic) (magnetic) (magnetic) (magnetic) Epoch Epoch Epoch Epoch Constituent Veloc- |: Veloc- Veloc- Veloci- a a ba Chea. ot lege Cae ay cal Green- a eel Green: kK wic (k wic 2 K wich |, kK wic (knots) (de- (de- (knots) (de- (de- (knots) (de- (de- (knots) (de- (de- grees) | grees) grees) | grees) grees) | grees) grees) | grees) Savannah Lightship Savannah Lightship 369 days beginning April 27, 1925. Mag 369 days beginning April 17, 1934. Mag- netic variation 0° netic variation 0° Koos hes saa 0. 032 56 137 | 0.031 176 257 0. 016 80 161 | 0.026 193 274 Kea 8 0. 009 209 10 | 0.021 319 120 || 0.013 168 329 | 0.015 323 124 lbp...) OOO! 180 341 | 0.013 264 65 |) 0.007 140 301 | 0.011 276 77 IM eae ee ee 0. 006 163 244 | 0.014 215 296 || 0.007 359 80 | 0.003 72 153 IM yeaa eaeeae 0. 192 167 328 | 0.374 306 107 0.145 173 334 | 0.289 312 113 Nise ke 0. 004 236 118 | 0.016 40 282 || 0.004 223 105 | 0.011 44 286 IWMI {est eek 0. 014 129 92 | 0.011 332 295 |; 0.009 228 191 | 0.010 320 283 Nig eeene = 0. 008 69 193 | 0.003 273 37 || 0.004 74 198 | 0.005 256 20 Mise eke 0. 001 231 156 | 0.009 121 46 || 0.006 324 249 |-0.0038 331 256 INS See ee 0. 049 155 316 | 0.088 293 94 || 0.028 155 316 | 0.059 295 96 en NOT 81 162 | 0.025 242 323 0. 008 95 176 | 0.015 158 239 ieee eee 0. 02 136 217 | 0.026 229 310 || 0.027 135 216 | 0.024 196 277 (Ons See ae pe 0. 004 4 SiS 1 OOOO) jes a 0. 006 23 104 | 0.006 139 220 Sie ste eb 0. 052 124 205 | 0.030 194 275 0. 048 136 217 | 0.035 216 297 (Sb seer ne eee arom 0. 050 177 338 | 0.080 330 131 || 0.032 186 347 | 0.052 333 134 WN ee 0.013 158 319 | 0.020 310 111 0.009 149 310 | 0.016 347 148 (Shes ies eae 0. 078 118 118 , 0.046 29 29 || 0.115 92 92 | 0.046 52 52 Siri epee aoe 0. 042 218 218 | 0.024 240 240 || 0.029 246 246 | 0.042 237 237 Brunswick Lightship Brunswick Lightship 369 days beginning January 1, 1919. Mag- 369 days beginning January 1, 1920. Mag- netic variation 0° netic variation 0° 1 Ee eset 0. 024 111 192 | 0.027 229 310 || 0.016 107 188 | 0.020 218 299 IX ee eee 0.018 209 11 | 0.020 330 132 || 0.014 232 34 | 0.027 325 127 1 bp) See eee aera 0. 012 240 42 | 0.013 8 170 || 0 009 165 327 | 0.017 318 120 1 [See eee 0. G03 102 183 | 0.008 117 198 |} 0.012 274 355 | 0.006 287 8 Migs sees ce 0. 184 186 348 | 0.337 333 135 || 0.203 166 328 | 0.354 314 116 Wp asseeee seh 0. 005 227 110 | 0.002 44 287 0.010 205 88 | 0.004 19 262 IMIS ee 0.016 182 147 | 0.004 116 81 0. 012 162 127 | 0.005 352 317 Wigton: eee 0. 012 172 299 | 0.009 259 26 || 0.007 123 250 | 0.008 227 354 Vipin eaten 0. 001 271 200 | 0.003 300 229 || 0.008 101 30 | 0.001 133 62 IN( es ae eevee 0. 044 152 314 | 0.081 309 111 |} 0.042 151 313 | 0.082 301 103 Oyee Relea 0. 026 101 182 | 0.021 183 264 0. 025 62 143 | 0.019 193 274 1 Bf sis es ae 0. 014 144 225 | 0.016 234 315 |} 0.023 124 205 | 0.018 242 323 Cy eee 0. 004 159 240 | 0.013 335 56 |} 0.008 82 163 | 0.002 44 125 See ee 0. 055 158 239 | 0.044 246 327 |] 0.046 153 234 | 0.039 238 319 Somes ees 0 044 213 15 | 0.077 352 154 |} 0.047 181 343 | 0.059 341 143 IMM ae soeeioe 0. 006 200 2 | 0.008 341 143 || 0.013 146 308 | 0.015 278 80 Saar 0.108 117 117 | 0.020 71 71 |} 0.116 90 90 | 0.061 346 346 SSaeeee ee eS 0. 032 157 157 | 0.025 242 242 || 0.092 244 244 | 0.058 262 262 40 U. S. COAST AND GEODETIC SURVEY TaBLeE 7.—Current Harmonic Constants, Atlantic Coast Lightships—Con. North component (magnetic) East component (magnetic) Constituent Epoch Epoch Velocity H (Radeh | cna, Paco mn | Veloctisnen | connate Local (x) | Greenwich | (Knots) | Local (x) | Greenwich (Degrees) | (Degrees) (Degrees) | (Degrees) St. Johns Lightship 369 days beginning December 23, 1933. Magnetic variation 1° east Ka so oe se eos eecen ene neheaeiees 0. 039 134 215 0. 039 257 338 Veg. 2a Soe a eet acne 0. 010 173 336 0. 004 32 195 0 ree Sees Sapien Stain nee ae 0. 008 116 279 0.013 222 25 Migs 3 Pode oc tate 3 eae Se 0. 005 211 292 0. 007 352 73 IMG A. Sacensih eee cosets 0. 154 144 307 0. 090 318 121 LY ee ees ae Sse 0. 008 136 20 0. 004 240 124 Migs ae ce ean eee eee LS 0. 006 130 95 0. O11 238 203 1 eee See. eS 0. 006 16 144 0. 006 340 108 DY Fn earns eee ee 0. 004 231 161 0. 001 81 ad 1 | eet eae esas es eee. 0. 033 122 285 0. 023 302 105 OW 3. a aes. oe See eee 0. 014 51 132 0. 007 203 284 Wie = = Sabena eee ot 0. 020 131 212 0. 043 224 305 (o) en a a es 0. 016 46 127 0. 009 174 255 [S| Cee ees eee 0. 079 142 223 0. 098 241 322 (3) Pes. See pee a 0. 035 180 343 0. 022 337 140 VU a ees bee age oe 0. 011 193 356 0.011 290, 93 (Sp See Soa 5 aes Ses eee 0.125 99 99 0. 042 124 124 GSa. oo Soaks te eo 0. 022 225 225 0. 040 233 233 Portland Lightship 163 days beginning May 20, 1919. Magnetic variation 16° west KA at ce See ee 0. 012 318 28 0. 013 68 138 21S saree eins Ae pence PS ee 0. 008 7 77 0.015 352 62 Vig eisai oe nee na eee 0. 131 244 24 0. 031 76 216 lig es ir ees 0. 008 36 316 0. 003 109 29 igs See ok oe Er ee See as 0. 001 320 21 03000) ||. =. = 22 3) Se ee roe: Pe ee eee 0. 032 248 28 0. 020 71 211 (Oi cane Soar SR cos oe ee see 0. 017 157 227 0. 012 300 10 3) peoaeiee ee ee eee 0. 016 315 95 0. 004 180 320 Pollock Rip Lightship (1911 Position) 87 days beginning June 20, 1911. Magnetic variation 14° west See ea TS ee 0. 039 149 219 0. 095 295 5 i eee ees es ere 0. 650 135 275 1. 186 191 331 A nl a ae 0. 126 225 145 0. 039 17 297 1 Re Stee SAE Soe See ee we 0.021 303 2 0. 032 32 91 1 ee ee ee ee eee 0. 025 96 295 0. 018 44 243 (Cree oS eee Sere ees 0.016 69 139 0. 030 226 296 SUS see eer Se eee Se. Le 0. 095 164 304 1. 153 216 356 Sy eet Be eee © des SP 0. 008 354 274 0. 017 313 233 Great Round Shoal Lightship 87 days beginning June 20, 1911. Directions are true 1G eee potas pocecceeesee ny ag 626 10& 0 | SP FIG O61 0 | 02 OFZ 0910 | 9g8 912 z9z 0 =| 9ce 91Z 6/z'0 | Lee 161 61c0. |-"ss22--2=- = “tg GPE 026 8600 | PLT FOr F100 | 29% Z8T 1100 | O9T 06 P10'0 | LPL LL 1200 | TLE 101 9t0°0. |--7- 2-0 1g 68 18 GCOKOD i sree 7 areas 0000 | #98 P86 8000 | Fz H0Z Z10'O | Ihe TZ 300°0 | 6&e 692 00:0 |-------7 <0 22022 i 61 LOE £10 0 18 IT ¥60 ‘0 8P BEE 020 0 LE LOE 020 0 FI FOE 9£0°0 OLZ 00z ORONO pesca sae Soe See as 1q 18 ST 620'0 | 8& 828 ch0'0 | TT 108 £400 | FE FS L100 | SZE CGz Z10'0 | Z&% ZBI Ika) 0) © ||PoRasoseececsasesascsces 19 Wet $0 Og€ ‘0 Migs FOG L0G ‘0 808 891 861 0 (4:16 CPL 862 0 E8S EPL 9827 0 79 ZEI Pl Ole oe eee ee aN LLG 8¢ 600 | ¥2e &% 4000 | 0&% 62 9100 | Fez be 800°0 | SFT 808 Z10°0 | O1Z IL LQQ°Q |t--cccccc cee a1 41 £08 4200 | OL 8 400°0 | Ler L9 6200 | 28 CG 1500 | 18 1Z #£0'0 | Z6L eT 8600 |-ocooooe oN 9ST LEG LLO'0 | 69 881 1h0'0 | 22 aS 0800 | ZF 221 0800 | 0g OTT 6400 | 008 1z Feel Eee VIN ee 961 9100 | 42 986 G10'0 | 12é 19 9100 | TOT 196 T1100 | zz CT 110°0 | #82 PL 00:0 |c--2-2--c ooo CN 61 EG 9FL T | ST LEG T¥O0'T | OS€ ZI OLT'I | &28 Z8I 8z8 I | eze ESI 808'T | 90¢ 99I 7G [eileen pee eee an 996 PST L100 | 18% I8T 400°0 | 981 99 2000 | I2z 102 9000 | zze a4 100°0 | 681 611 00 "0 |cccccctcc cc TW 9L 166 G01 0 | €0T GE 1900 | 9 G8% cIl‘0 | 6g 61Z 01z'0 | 0g 0cz 9810 | 6Rz 6FI 6@0 (0 |rn--ccec cence rr] 8h £92 $80 0 68 892 $60 0 1G LEG £90 0 6 (4G 960 0 6FE 60% 1600 oge 061 6C0k0) S| Gsassa asa oy T0T 66 8900 | €8 él 4800 | 28 Lee £900 | € €1e 00r'0 | 8% gig e010 | FTe fava Rl eee iy saaibag \saaibaq | sjouyy |saatbaq |saasbaq | sjouyy |saatbaq \saasbaq | sjouyy |saatbaq |\saaibaq | sjouyy |saasbaq |saalbaq | szouyy \Saasbaq \saasbaq | sows yoy an (”) qorM (¥) yor (¥) yor (”) yor (*) yor (*) ude) | [Bo0'T H -Udsaly | [RoO'T HE -uvaly | [eoory H -Wdaly | [eo0'T H -udaly | [BOT AH -udaly) | [eoO'T H yqoody AY0TI A. yoody A{0TA A. yoodq AQDOPIA, yoody AYDOPOA yoody AYO0TAA yqooda AMIO0[9,A jyuonqysuog 4uIog pleyusog diy ssoig Jorpo1eypuey jeoug os10y{ 904g yeoug es10y 004g any yoorpog [so1s0s Avp-69¢] sdiysjyG417 JSV0) 912UD)}7P ‘SJUD}JSUO) D1UOW ADA JUILIND—'g AIAV I, 44 U. S. COAST AND GEODETIC SURVEY Taste 9.—Current Harmonic Constants, Atlantic Coast Lightships [Series less than 369 days in length] Ram Island Reef Overfalls Tail of the Horseshoe Constitu- | Velocity Epoch Velocity Epoch Velocity | Epoch ent — H Local (x) pee H Local («) Grea H Local (x) Grese Knets Degrees | Degrees Enots | Degrees | Degrees Knots Degrees | Degrees Ra seeseses 0. 068 21 93 0. 141 55 130 0. 156 179 255 Kg vena 0. 109 259 43 0. 095 220 10 0. 068 326 118 1 ye Se oe | Pee Re ral! Eels ae TCAD) la Bae : 0. 131 240 30s) aks oe “hee ee Wigs eee 0. 004 148 220 0.015 215 290 0.017 194 270 Mig sso 2h2 82 1. 433 224 8 1.708 188 338 1.101 253 45 1,3, aS ere aE ee ee Se) Se ee 0.010 193 5S) fo lel 2 eee ; Mies 0. 062 194 122 0. 020 308 248 0. 042 55 359 1 eae See S| |S Se eed | ee SO Se 0. 025 181 271 0. 007 34 130 IMitgaiss fo 5 | ee be Re oe |e oe 0. 005 99 339 0.010 41 289 Naber 5 0. 293 202 346 0. 290 156 306 0. 254 227 19 Oye Se 0. 028 62 134 0. 096 56 131 0.176 134 210 iP eee oe sowie walle aero 8 |e ee 0. 036 39 1140)... ©) 2). 2 Sy eee as 0. 228 245 29 0. 201 202 352 0. 236 278 70 Giese ee 0. 006 259 187 0. 009 270 210 0. 014 350 294 Bienes SR ee Sees shee Ya aa 0. 002 180 270 0. 004 110 206 Ming ale ee he ee Se ee 0. 045 356 146))| 22-258 2.) sos 2 | ee ING | hee ee ee eee 0. 068 181 Bolts: 220" 2 ae oe ee Series: be- |) Sept. 27, 19ls2_-— ee ee Mar: 2151920). 3-3 eye aes Aug. 1, 1919. gins. Henethrom CST Gay So 4 se es ee, PAT EOEN CTs ae Oa eee 87 days. series. ID pbfeCitovan | OATH gb Ute toe see ee oe a ae ee BIOS trues ee tee ee 305° true. of flood strength. Mirechion ||| S6e Cee aon es eee 1S 528) nb (=e ee ye a Pepe 125° true. of ebb strength. Epochs apply to the times of flood strength. The local epochs refer to the local meridian, Greenwich epochs to the Greenwich meridian. 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COAST AND GEODETIC SURVEY TaBLE 13.—Average Current Velocities Accompanying Various Wind Velocities, Atlantic Coast Lightships Wind velocity ‘statute miles 10 15 20 25 30 35 40 45 50 55 per hour) Lightship station Knots | Knots | Knots | Knots | Knots | Knots | Knots | Knots | Knots | Knots Boston es a ae sere 02065 | Mees =e2 OF10 5 Seana OM Gre eee QO232" cakes 20] Seis eee Pollock Rip Slue_____-------- ORES ee OLS | seees OS31s Saas OS6Ls ee 05685 sees Nantucket Shoals__-____--___ (0.20)} 0.26 | (0.29)} 0.32 | (0.38)} 0.44 | (0.46)} 0.47 | (0.48)} 0.48 Hen and Chickens__--__-____- OR4y | seers OMS) 2 ON 29" | Sec aes 0; 29 || -2-. | ae eee IBTeNTORUR Ces e eee ee ee (OS Hay |e Ge 0523); aes O335u| sees (eta |e = 3480) Pao soe Fire Island} = ae S ees ae ON14) ew she Os 21) See 0.3283) jane 0538:)| eee 05387) |2228 243 Ambrose Channel__________-_- (0) aya | ce OF 28 RE see ee OneoF =e 0829" |2 22 2 ees | eee Seotland 222 2h Oe ce Os 251 |Past Os32h Sie es URS Foe fees oe 02565 |e Q500 | See Barne rate anise trersseine OF 07m |Seetaee Ovd Gi sse ws 0) 24>)ooeweee O/3by|-sese= 0:20 eel cs INerthesst End Ss ses te QO}: 22 | eee 0828) Teese Osa) | ees O62) |e aera X64) Seba Oyerfallst. $52.6 te PE See O23 [Sees ee Oh28s | seas ON44)| | ae 0N55,|2 2a NEES El eee BS Winter-Quarter Shoal________ 0:14 }) (0.20) |) (0:28) ||" 0536.) (0:41) 0746"); (0.:48))| OF51 222) ses) eeeeees Chesapeake: so oe R Le) . 43 s Diamond Shoal__--__ Cape Lookout Shoals Frying Pan Shoals_________-_- Savanna ba sees le peat sn IBTUNS Wi Ckses 22 Waals Pe Sin Uoisiak) Sue ee ee eee ASVOra ce iterate Mines eee Ration © [yy ssc sas 2 ees ae Values in parentheses are inferred. 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Pee 810° | 900° (OC Sil oe cas 910° | #00° OQ = 810° | 900° S20 eae aa en[s dig | 109 Yoo, | -sog “lod Sines “""""""-93eloA VW Sd1Y87451T 8D0) a,uDIIy ‘Ano 4aq sappy 24NINIg UI Az100]a4 PulY 07 sjouy U2 fi}190]0A4 JUALIND JO 014DY abviaay—'G] W1Aavy, Page Aumborose Channel) Wiehtship»-.- 2) 9222202) 26, 29, 33, 41, 50, 59, 68-70 Barmernipeichtshipie.) a ae Jet EE Py 26, 30, 33, 37, 45, 51, 61, 68-70 Banvletimvecisaightship 020) 5°) Taeee iia umes 26, 27, 33, 41, 50 Bostonplightshipye eae o eUee) eee 22, 26, 30, 32, 36, 45, 47, 55, 68-70 Branca (Weis.55)) temporary, hghtship wo. 0. aan emieeninie) loin es 26, 31, 34, 52 Brenton Reef Lightship. _______1.____ ad aie fe 26, 27, 33, 37, 45, 49, 58, 68-70 Brumswickphightshipss 0 (2S eis) --- 21, 26, 28, 31, 35, 39, 46, 53, 54, 67-70 C2per@harlesmlightsiip ss — 2s) Pee ee eels Eee ee a 26, 29, 34, 41, 52 Cape Lookout Shoals Lightship_____. | _.. 24, 26, 31, 35, 38, 46, 53, 65, 68-70 Cardinaly(@UsS.)8:),, temporary lightshipso2/ 22209202 26, 29, 33, 50 Charlestongightshipioi.. we ooo. Laue LG mee We hisut 26, 31, 35, 42, 53 Chesapeakemlightshipueso ool sill eos enl eile 26, 29, 34, 38, 46, 52, 63, 68-70 Coastal currents, Pacific Coast United States__.____.__.._._.._.... II Cormieldgroint Wightships oo... Seo Poe ira ye 26, 27, 33, 43, 50 Crosssuipslbightshipis c=)... vette eee 26, 27, 33, 43, 49 Current, charts of Georges Bank and vicinity__________________.|_ |. 25, 26 CUES BEC VET SUING Mie Loy eee sy a ep en eri 8 2-6, 18 data, graphic. See List of illustrations, pages m1 and 1v. dataroTapincCsexplanationsoies suet eu elo! ai eas 24 data, tabular. See List of tables, page tv. daveretabular explanation ofemat sa. ian. ul) yeas Wie dosent e 20-24 Chases pho Lali Mee aie CL eee OU a ac ey Wea Pe renG 10, 11, 18 Chimera wenn el Wise oe ee ol os 2 Pe ee) eae 1 LOO CL Eeeeree LINN Mei gn rae rie ee Gee 1 Seneralicharacterishicsum uaa lo ee eee 2 i ean ek 1-15 MAA eee eee Le Seem OU! 2k Ve Fe aa 10 TTC AUREL CS eben seats ein Nu ee ecw Ce ee eae ir, P at Aeshna ae 15 Me MOCROMOWServing swig. RS sale ve ale. oan ie 16 MAE UMNO GSFOMre dCi pea Hee a ak be eee ies re pp ae, 17-20 ENING ee eed Ue Cee ee Le ee es age 10 SOOO RICCIEY ar 5 eye a Sa OnE be 1, 3, 12-14, 17, 28, 26, 47-54 CHE CUS Olea bee aetteapiel ek Teo ue Das i, Cael itg oleae 3, 12-14 REGUehON Of erawe ok Nal eA enon ay ive eee LS eee Uy CO 18, 19 Seaconaluvariationgin= = ssses ens n ls eee Se eae 23, 26, 47-54 Observations st wa Uae Nano le ee Se sl ahaa ae 16 190 CMAN Jo oe. ee een | oh oe a ere aie g 16 DLediChons secu we umes © Sei Seren | 2 Le NS Seen II Me Colne age Ue Ca ee tie, Ue Mi Oe aiid atk 1 LEGuchoOns, Larmonice.saa00 |) lee eee enay ie NS Les Sera Re 19 MOMIEMONICH: Lak sok oo. 2 ee ey | pl age do 17, 18 TESCO aU) Coroners Rs 18 TONE ESM Sse al eae ae ee Wr eer aaa 1-9, 27, 29 SU UEL pV A kg LA ee i Rn 9-14, 26, 30-385 Slack@uaee sie. ot 320) ole so ey et Re Ness 5S CONE eGR ay Ar (erie 1 Solargciurmall =. <5 wh ee cp eee Snel OPERA Heiney ith 22, 45, 46 SCAMONS RlOCcatiONnS Of. Us uan as soem seein Lye ead Menten a Phe Ra 20, 26 SURO T CG rie tis nh aR te na od) TO Ge aes nny THIOL, i a ae eM Tees th Ge UB Rg re Calaernas «NU hae 1, 17, 27-44 WelOcibyACcunVesHes UE Eee eis el aa VS Ar ete end 2, 3, 5, 6 pT Ay 0G ben A Ea Os ay 17, 23, 24, 26, 55-70 REGU CMONNO LU eA Si TS Sewn il be tls” abet eke 19, 20 Currents, coastal, Pacific Coast, United States__.._.._....___.......___. II publications pertaining to, Waterways, Atlantic Coast__.___________ II DWaikyacurrent ues ss 5000 (OUNe me CE nS | Sarma) Lycee, 4,5 Diamond Shoalblichtshipsosnueeallaeleeen ei) ls 5D) 200) jog 22-26 72 INDEX Page Distancestraveledtduringy ay Gie all reve] ews me gee ae es 7,8 Duration: Of slacks 4 je ee os et ee Lo Sd ean ae eh ... eel | ae eee 26, 33, 50 Hire dislandaisightshipe = 29 ere ee ae ee oe 26, 29, 33, 37, 45, 50, 59, 68-70 Hives a thom am kei gla Gerling ss es pee ap a ae ee A See 26, 30, 34, 51 PIOQd Bees seek CAN te Ser et ee on Ee ee 1 Frying Pan Shoals Lightship_____________ 13, 14, 26, 31, 35, 38, 46, 53, 65, 68-70 Georges/Bankiand vicinity, current charts. _...._......4edstieel seas 25, 26 Graphic current data. See List of illustrations, pages m1 and rv. Graphie;current data, explanation Of... 225 22 )2) iub eceyee al Le ee _ 24 GreatsRoundsshoal Lightship... 02s. 42 2 ek eee 26, 30, 32, 40, 48 Greenwichtintervals, =. .-4. 4 eee 21 td@es2 es fee seme Jere ey ees ery hot ten lp hs te) ee one 36 Knope 22s 2 Me Aes Ee ee a ee et peels pee oS 2, Le Long Island (U.S. S.), temporary lightship_____._.____---_----- 26, 31, 35, 53 Martins Industry Lightship Brews Sh ors pen We aes ae al a 26, 31, 35, 42, 53 Maxunmnm:current 20 ooo) 2 as.e Ss be Ss ee 10 Medtaretreent Nour. 2 42. Shs eo” SOG he 5 Pipes eo ee ee PAIN Nieamav wiles: "so ee Ye a te ye ens Sai 15 Minimum, current. 302222 Se esi at en) ee i ee 10 INGixeCiGurren beeen cts SUE Te See ee ea il a er 4 Nantucket Shoals Lightship_________ 9-13, 22, 23, 26, 30, 32, 36, 45, 48, 57, 68-70 Nontidalkeurrents=sese es Seton atk ee Seer A a eee 1, 3, 12-14, 17, 23, 26, 47-54 effects Of» 9) we oe | eee Sc 3, 12-14 MOGUL GU] OME a at 5 hl oar ee cep, Te ee a) 18, 19 SCASOUE ATIC PION in tea. © kee ee tee le aie ere 23, 26, 47-54 Northeast Hnd Lightship. _.--..-2-2.-2. aS ja 5 26, 30, 34, 37, 45, 51, 61, 68-70 Observations, current; method of obtaining_.2=_2 =... 22 Jeesbesies_ 3 16 method of reducing BOSS EP as nee) toegeas 17-20 Owerrails ashtenipe ei ae oe oe a 23, 26, 28, 34, 44, 51, 62, 68-70 Reriodi¢e variations ieanidalicurrentsssu sole oe ae. ee ee 3, 4, 12 Boletveumrentue |e) = ee oa Us ye cea eee en 16 olloek Ripa Sisto ba ts Bip ode ac eet ye rs id ee I 26, 27, 30, 32, 40, 48, 47, 48 Pollock Rip Slue Lightship. -___.....=_. 21, 26, 27, 30, 32, 36, 45, 47, 56, 68-70 Poche tonishipiec sie hoo eee ote ee eh eo) eee 26, 29, 32, 40, 47 Progression of tide and velocity of tidal current________._.-_---------- 8,9 IPTORTESEIV.E WAVE lus a eee oe fuer e we Len nae Mia sel Se 5 itaip snes eet ir bpship so fall el Ee, Se ee 26, 27, 33, 44, 49 EVER OMUTTOMEG fee UETETGS eee os as oo ee 18 Reversing current velocity curves..20 =!) a2... eee 2-6, 18 ewersing tidal currents. 2.00) 8 2 0 ae are ee 1-9 MOLany CUETENt GIAPTAMS.. 200 Maa ree Ba) Re aoe 10, 11, 13 Inetaryatidnl currents sok Oe Ce Cee ee eee 9-14, 26, 30-35 Sia venne Miphtships oe. ey cet hal Pema 22, 26, 29, 35, 40, 46, 54, 67-70 Savernen Ions Nip st A) Eo a 26, 31, 35, 39, 46, 53, 66, 68-70 Seotamdsehtship: io 6 WAU Ss Ape ess 26, 30, 33, 41, 51; 60, 68-70 Seasonal variation in nontidal currents:2 222l2 J se2ih sliees lek 23, 26, 47-54 Semidaily current, 22 goa5) ot Gecli At gp woke Wh alts pane bee eee 4 phovelfal Shoal laghiship. 2222 000 1s oe ee ee Pe 26, 27, 32, 48 Slacks waters 2.22. 5ee 62555 b os oe ew een Ye ie 1 INDEX 73 : Page Ail Ghiuemnall @puersmpo = |e ee ae ee eee ee ee 22,45, 46 Stationary wave__-.--_-------_---------+---=--------------_-~.--~--- 5 Sigme lores Slaol! isl bee Bee ee oe 23, 36, 27, 32, 43, 48 Strength of current. _ =2e2. ote eee 82 a 2 @Q One toca oS Beebe eee de esses heod He Seabee soseesasceeseeees 2 FOO Ce ee oe eee ee oe eee oe ee ee meee e reese eoe 2 VEOOOS TM 1 os eee ee ese as be pee oe she soo sas tee See 3, 4, 12 Tabular current data. See List of tables, page Iv. gees Tabular current data, explanation of-__=-22 2242-2 -___- = 2-4 20-24 Tail of the Horseshoe Lightship__-------------------------- 26, 28, 34, 44, 22 Thal quran, Clommiomgs 22 sa 2 oe a Pope seas Sane as = Se general characteristics Gy Be Pra ay SIVAN ct) STL AI EEL RN 1-15 periodic variation in----------~-------------------------------- 3, 4, 12 TOCHIGI! La ew ee ee ee eee ee ere ees eee oe ROWS. oh ee ea eee ee eee eee eee eee Ses eae et 1-9, 27-29 TRON 7 ps a a a ee See 9-14, 26, 30-35 {HUOTS) OMT iho) AHO THO) HUNTS OF HO ee ee 5-7 (VOCS Ol De oe ee ee eee eae eee eo eer 4-12 iidalWweycley distance traveled in= se see see eee 7,8 Tide, Greenwich high and low WELEG TIAL ETAL Se omen ermearsslihe Ln Sh 36 high and low water used as time reference for currents ------------ 6, 18 PReECIChIONS eee Ny hE ee ee eee ee 22, 26 FSH GEER ONS) xcs ye ea Ba SUS 3a Ne ee es gee sees ee 21, 36 Time relation, current to Greenwich tranmsit_____------------- 18, 21, 26, 27-35 CUMRAMN TO WOOL. 2 oe eo e ao ee eee eee ee seeds ecb es eade 5, 18, 26 tice to Giraemiieln EMO 3 ee oe eee obo See SeeeSe sees 18, 36 Bay MeSROn dal) currents oe 2 25 seasons ee ee 4,12 Velocity, of current and progression of tidel—-_=__=---==2-2 =" 22-2522 8, 9 Wiaewanal Souacl Iii Se ee ae 26, 30, 33, 41, 49 NVAVSITN GLERCGUTTGTE€’ Tn Cpe seg ae eee ts Ea SAU ys ne 23, 24, 26, 55-70 TRECIUIGTIOIIY Oe ae ee en eS ee ote enemas 19, 20 Winter-Quarter Shoal Lightship _--------------- 21, 26, 34, 37, 46, 52, 63, 68-70 7 at ie “alee Tat “yh hat H ’ ; [< a pb ines Meas SERIE BL | Sik Es kaa sea wae cy iparn en ase vite ary ar TRIAL” laced isaac : / 77° wee - AS Ta woes ee ; ae & Me a = ae eee ee ae php ee ee e Bey grb oS) ; she Fi em mga : t ] | Wee Litaor / SET? OW uaa hee siti Loree eee vs Se’ Sp 4 moe ec === dt es. 2. Tae cP papa Nowak! Libs Aceh a tebe ek mS miles et Sat mn ne @ yt ate we ns raeeyae“as bi pie oi 5 Puy . a » ary a Gari Soe += Se ee Bee cae a te SSN DU FLAT eee 3 if 1 *\Gafetes aa! ¢ mt PS Lee ey p75 Taz f ’ a iil ogat * yi Wate te eG Se . “ Ang time a” ne ee ee ee Se =e = eae ms ‘ Pal i i oi FE t a i T< He (i) Aeris: mi 3, PNET Pei a Shae = a os Sima a Nes ~ pv nk a ie oa es ad obs to onto eile we i POP en , pay “+ . \ ig oteiee Ci eee a ea ke, hs { is, ie Sore Preys po “- er PIAA | ef Breataier f ane Re ee ee } Satin saiuil tehine Graf bia tid é Y 20 NEOEE Loa oh ee Oe hahveeaild cmebY day "Lyeasr TarAWw Oh Oem oy ie s as 4 4 3 Pie sees | Se CT satel a bee Spee ts “i O95) 9 } oe > fa’ ere > % Hautes doteranont) ol dueenetin ite (ih a SERS! EE Pe PRR RE iia i OE ; : Be aa ee oe =~ Servis t = whe le ob ley ORreAmO TG hits spoons RE TR Be OF 8S -. + a5 te ee ee ie-- qitetigid bait OD id .t-ee PS SB IP Bi big : F a ht 7 : f : aft wy gg ‘ype po. et : ia a er : mens ie iigl.b motel 4 ~~ = — > ‘} tw 4 m af : ee ies -_ ay] bats eis he hs (1h : ‘eeti3 : ot Vi OO ee a4 Bloke ly : rw Wa) = UZIK ~~ a a chews MEENA abel PUBLICATION NOTICES To make immediately available the results of its various activities to those interested, the Coast and Geodetic Survey maintains mailing lists of persons and firms desiring to receive notice of the issuance of charts, Coast Pilots, maps, and other publications. : Should you desire to receive such notices, you may use the form given below, checking the lists covering the subjects in which you are interested. Director, U.S. Coast anp GEODETIC SURVEY, Washington, D. C. 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