Subject Index
A
Absorption coefficients for dissolved gases, 190, 191, 202
Absorption of radiation (see Radiation)
Abyssal-benthic zone, 277
animals of, 805–810
Accessory growth factors, 769
Adaptations to planktonic existence, 764–766, 821–823
Adiabatic temperature distribution, Mindanao Trench, 739
Adiabatic temperature gradient, 63, 64
Advection, definition of, 157
Agulhas Stream, 696
Air-borne material in sediments, 955
Aleutian Current, 722, 723
Algae:
benthic, distribution of, 290, 291, 293, 295, 782
blue-green, 288–290
brown, 291–294
coralline, 290, 295, 855
green, 290–291
red, 294–295
yellow-green, 295–302
Alkalinity, 195–198
distribution, 208–210
relation to calcium carkonate content, 1000, 1001
Allogenic minerals in sediments, 987
Alternation of generations:
animals, 306, 319–320
plants, 290, 292, 294
Aluminum, 182
Ammonia:
distribution in oceans, 243, 244
produced on sea bottom, 995
role in nitrogen cycle, 256, 257
seasonal variation, 252, 253
Amphidromic point, 557, 558
Anchoring, in deep sea, 361, 362
Angular velocity of earth's rotation, 433
Animal exclusion, hypothesis of, 900
Animal population, 303
diversity of, 282
ecological gropus:
benthos, 280, 800
nekton, 281, 810
zooplankton, 281, 812
synopsis of, 304–314
Animals and the environmental factors, 823–873
light, 824
color correlations, 824–830
structural correlations, 830–833
vertical migrations, 835–839
ocean currents, 858–869
dispersal by, 858
maintenance of endemic population by, 863–865
oxygen, 869
anaerobic conditions, 871
consumption of, 852, 853, 870, 873
salinity, 839–843
a selective agency, 840
euryhalinity, 840
size and, 842
stenohalinity, 839
temperature, 843–858
effect of freezing, 844
influence on calcium precipitation, 853
influence on geographic distribution, 845, 849, 851
influence on metabolism, 852
influence on reproduction, 845–849, 857
influence on size, 855–857
influence on speciation, 867–869
Annelida:
reproduction, 321
synopsis, 308
Antarctic Circumpolar Current, 613–621
Antarctic Circumpolar Water, 607, 610–611
renewal, 620
Antarctic Convergence, 139
biology of, 809, 941, 942
formation, 618
location, 606, 607
Antarctic Intermediate Water, 139, 608
formation, 619
Indian Ocean, 691, 692, 697
North Atlantic, 670, 685, 686
South Atlantic, 626, 627, 629
South Pacific, 699–701
spreading of, 139, 744, 745
Antarctic Ocean:
bottom topography, 32
currents, 613–621
oxygen distribution, 621–623
water masses, 605–613
Antilles Current, 672, 675
Aragonite, 998, 1027
Arctic Intermediate Water:
North Atlantic, 670, 685, 686
Pacific, 717, 718
formation, 722
spreading, 745
Arctic plankton, 856, 868
Argon, 189
Arsenic, 183
Arthropoda:
reproduction, 322–324
synopsis, 309
Artificial sea water, 185, 186
Ascendant, definition of, 156
Associations of organisms, 880–882
commensalism, 881
environmental associations, 880
parasitism, 882
symbiosis, 881
Atlantic Ocean (see also North Atlantic and South Atlantic):
boundaries, 11
equatorial region, 631–637
currents, 632–637
water masses, 631, 632
oxygen distribution, 210, 686, 748
tides, 581–585
Atmosphere, composition of, 189
Authigenic minerals in sediments, 1027
frequency of occurrence, 987
Auxospores, 298
B
Bacteria:
aerobic, in sediments, 212, 996
anaerobic, in sediments, 212, 996
bottom deposits, effect on, 917–918
collection and analysis of, 383
denitrifying, 257
distribution in the sea, 918–920
importance in sedimentation, 995
importance to precipitation of iron compounds, 1032
in the Black Sea, 871
modes of life, 910, 913
autotrophic, 910
heterotrophic, 911
oxygen relations, 913, 917
nitrifying, 256
occurrence in sediments, 1016
possible role in petroleum formation, 996
structure and reproduction, 908–910
used to determine organic carbon, 249–251
utilizers of dissolved organic matter, 911–913
Baffin Bay:
bottom topography, 30
water masses, 663–665
Baltic Sea, 657–658
Barite concretions, 952, 1033
Barium, 183
Barnacles, reproduction of, 324, 326
Barriers, faunal (see Zoogeography)
Base-exchange in clay minerals, 988, 990
importance to flocculation, 958
Basins, 23, 26
adjacent seas, 37, 38, 736, 738
sediments in, 1026, 1028
with inflow across the sill, 148, 149
with outflow across the sill, 147, 148
Basin water, 147
plant nutrients, 246, 1028
stagnating, 1026, 1028
Bathythermograph, 352
Bay of Fundy:
tidal currents, 569
tides, 562, 563
Beach:
deposits:
character, 1023
composition, 1022
texture, 1019–1023
relation to slope of beach, 1018, 1019
equilibrium state, 44
terminology, 43, 44
Benguela Current, 627–629
Benthic environment and its subdivisions, 275–278
Benthic organisms, importance of to texture of sediments, 997
Benthos, 280
biological factors in the concentration, 907–908
collection of, 374–375
deep-sea, 805–810
littoral, 800–805
vertical distribution of, 806–807
Bering Sea, 732, 733
Bering Strait, currents of, 665, 723
Biocycles, 274
Biological factors influencing movements and concentrations of organisms, 898–908
Bioluminescence, 300, 304, 814, 833–835
Biosphere, 274
Biotype, 279
facies of, 280
inhabitants of, 280, 879
Bipolarity, 849–850, 868
Birds dependent upon the sea, 313, 942
Bjerknes' theorem of circulation, 460–462
Black Sea, 649–651
biology of, 871–872
lamination in sediments, 1040
Body fluids:
composition, 232, 270
osmotic relationships, 269, 272
control of, 271
relation to sea water, 269
Bolting cloth, 377, 378
Boric acid, influence of on alkalinity, 198, 199
Boron, 180
Bosporus, currents of, 650
Bottom samplers, 344–347, 375
Bottom topography:
illustrated, 18, 30, 32, 34, 35
influence on currents, 466–469
large-scale features, 23, 27–30
maximum depths, 18, 19
nomenclature, 25–27
profiles, 17, 18
representation of, 16
Bottom water, formation of, 138, 139
Antarctic, 611, 612
Irminger Sea, 682, 683
Labrador Sea, 664
Mediterranean, 645, 646
Norwegian Sea, 656, 657
Bottom water, potential temperature of, 749
Bottom water of the oceans, 745–754
Boundary condition:
dynamic, 441
kinematic, 424
Boundary surface, slope of, 444
Boundary waves (see Internal waves)
Bowen ratio, 117
Brachiopoda synopsis, 308
Brandt's theory of phytoplankton growth, 768, 784
Brazil Current, 628, 629
Bromine, 179
Browsing animals, 895–896
Bryozoa synopsis, 308
Buffer action of sets water, 195, 202
ecological importance, 268
By-the-wind sailer (see Velella)
C
Calanus:
abundance correlated with herring catches, 906–907
abundance correlated with whale catches, 905
biology of, in the Gulf of Maine, 864
feeding mechanism, 886–887
oxygen consumption by, 853, 870, 873
reproduction, 322–323, 903
vertical migrations, 836–837
Calcareous material in Sediments (see also Calcium carbonate) :
organisms contributing to, 950
Calcareous oozes (see also Pelagic sediments), 972
areas covered by, 975, 977, 978
Calcite, 998, 1027
Calcium, 178, 179
deposition by animals, 304–306, 853–855
deposition by plants, 290, 301, 855
Calcium Carbonate:
factors controlling organic precipitation, 999, 1000
inorganic precipitation, 208, 998
percentage in sediments, 998–1008
as function of depth, 1004, 1005
distribution, 1002–1008
factors controlling, 1007, 1008
solubility, 205–208
solution near bottom, 1001
supply to sediments, 1000
California Current, 724–727
annual variation of temperature, 131, 132
comparison with Peru Current, 725
off Southern California, 454
Canyons:
sediments in, 1024, 1026
submarine:
character, 39–41
formation, 41, 42
Carbon, 179
cycle of, 916
in sediments, 1010, 1011
organic, 248–251
ratio to nitrogen, 1010
Carbon dioxide:
as a limiting factor, 768
as a measure of production, 768
distribution, 208–210
exchange with atmosphere, 203
importance to deposition of calcium carbonate, 1000, 1001
methods of determination, 192, 193
partial pressure, 201–203
solubility, 190, 191, 202
system, 197–202
utilization of, by plants, 768
― 1064 ―Carbonic acid, dissociation consta,nts of, 199, 204, 205
Carbon-nitrogen-phosphorus ratio, 236, 237, 931
Caribbean Sea:
bottom topography, 35
currents, 641, 642
oxygen content, 640
water masses, 638, 641
Ceratium (see Dinoflagellates)
Chaetognatha:
as indicator species, 863
reproduction, 322
synopsis, 308
“Challenger,” dredging by, 805–807, 809
Chemical transformations, importance of to sediments, 952
China Sea, 735
Chitin, 289
Chlorine, 175
Chlorine-equivalent, 52
Chlorinity, 51, 52
units for expressing, 51
Chlorosity, 52
factors, 167
Chordata, synopsis of, 312–314
Circulation:
Bjerknes' theorem, 460–462
deep water, 745–755
thermal, 507–509
thermohaline, 509–510
transverse:
Antarctic Circumpolar Current, 618–620
caused by upwelling, 501
Equatorial Countercurrent, 635, 636, 711
Gulf Stream, 676
Circulation (water movements), biological significance of, 273–274
Clay minerals, 988–990
base exchange, 988, 990
flocculation, 958, 990
groups of, 989
origin, 990
Cl-ratio, 167
Coccolith ooze, 973
Coccolithophoridae, 301
Coelenterata:
reproduction, 319–320
synopsis, 306
Collection of:
bacteria, 383
benthos, 374
nekton, 376
plankton, 376–383
Color of animals, 824–830
changes, 825–827
of deep-sea animals, 826–829
of surface oceanic animals, 827
protective, 826
Color of sediments, 967–969
continental shelf, 1023
deep-sea, 978, 979
Color of the sea, 88, 89
Color of water, biological causes of, 289, 783–784
Compensation depth, 779
in various areas, 780
Compensation point, 778
Composition of foraminiferal tests, 991
Composition of marine organisms:
average, 230
body fluids, 232
concentration of elements, 233
elements reported, 228, 229
ratios O: C: N: P, 236, 237
skeletal material, 231
Composition of river water, 214–216
Composition of sea water, 165–174
constancy, 165–168
influenced by exchange with atmosphere, 212, 213
influenced by freezing, 216–219
influenced by rivers, 213–216
tables, 166, 173, 176, 177
Composition of sediments, 971, 972
Compressibility, 68
Concentrations, 158
conservative, 158
non-conservative, 159
units for reporting, 169, 171
Conductivity :
electrical, 71, 72
thermal (see also Eddy conductivity), 60, 61
Continental shelf:
average inclination, 21
extension, 20, 21
formation, 24, 25, 1019
sediments on, 1018–1023
Continental slope, inclination of, 22
Continuity, equation of, 423–426
used for finding layer of no motion, 457
Convergence, 419, 420
caused by winds, 500–503
regions of, 139, 140
vertical motion derived from, 425
Copepoda (see also Calanus):
as food for fish, 892, 907
as food of whales, 905
as grazers, 772, 901
food of, 901
reproduction, 322, 323, 903
synopsis, 309
Coral-reefs:
formation of, 854–855
organisms of, 855
Corals:
reproduction of, 319
systematic position of, 306
“Core method,” 146
Cores of sediments:
apparatus for obtaining, 345–347
compaction, 1037
relation between water content and particle size, 994
stratification in, 1038, 1039
Coring apparatus, 345–347
Corioli's force, 433–438
importance to ocean currents, 390
importance to waves, 520
Cotidal lines, 557
charts, 563
semidiurnal tide of Atlantic Ocean, 581, 582
Crinoidea:
bathymetric distribution, 807
synopsis, 312
Ctenophora, 307, 320, 890
Current meters, 366–373
Currents (see also Circulation, Tidal currents, and Wind currents):
absolute, 455–457
accuracy of computed, 393, 394, 453–455
computation, 391, 447–452
derived from ships' logs, 427, 428
derived from tongue-like distributions, 503–507
effect of bottom friction, 499, 500
effect of bottom topography, 466–469
Antarctic Circumpolar, 616
North Atlantic, 681
North Equatorial, Atlantic, 671, 672
importance to distribution of sediments, 965, 966, 1042, 1043
in stratified water, 444–447
related to the distribution of density, 389–395, 447–451
relative, 391, 442, 447–451
representations, 428–430
slope, 442, 458
sorting of shallow water sediments by, 1017–1019
transportation of particles along bottom by, 959–966
transportation of settling particles by, 959
units used, 363
vertical convection, 510, 511
wavelike pattern in South Atlantic, 630
Cyclic salt, 213, 214
D
Davidson Current, 725
Dead water, 587
Deeps, 20
of the oceans, 29
Deep-sea anchoring, 361, 362
Deep-sea benthos, 805–810
characteristics, 807
early discoveries, 805
food of, 808
horizontal distribution, 810
Deep-sea environmental system, 275–276
Deep water (see also under specific geographic regions):
circulation, 745–755
formation, 138, 139
Denmark Strait, flow through, 652–655
Density, 56, 57
computation, 57
direct determinations, 53
general distribution, 137–140
maximum, 66, 68
Density currents, 41
Deposition of sediments (see Sedimentation), 960
Depth of frictional resistance, 396, 493
“Desert quartz” in sediments, 955
Detritus feeders and scavengers, 892–895
Development of animals (see also Life cycles):
direct, 318
indirect, 318
of deep-sea animals, 318
Diatomaceous ooze, relation of to organic production, 942
Diatom ooze (see Pelagic sediments)
Diatoms:
as primary producers, 287, 296
auxospores, 298, 763
control by grazing, 771–772, 901–902
geographical types, 791, 793
methods of flotation, 764–765
number in the open sea, 763
number of important planktonic species, 762
nutrient absorption, 782–783
nutrient requirement, 768, 782–783
on whales, 299, 881
“persistent” culture of, 780
reproduction, 297–299
resting spores, 299, 762–763
sinking, 772, 781, 893
importance of viscosity, 794
structure, 295–297
systrophe in, 779, 781
temperature requirements, 770, 792–794
tychopelagic forms in the plankton, 762
― 1066 ―Diffusion (see also Eddy diffusivity), 69
Dimensions used in mechanics, 400–402
Dinoflagellates:
distribution, 762
methods of flotation, 765–766
number of important species in the plankton, 762
nutritional requirements, 299, 385
rate of production, 790, 930
reproduction, 300
structure, 299–300
systematic position, 304
temperature requirements, 385, 762
Diurnal migrations, 836–839
Divergence, 420
caused by wind, 500–503
near Antarctic continent, 620
near the equator, 635, 711
regions of, 140
vertical motion derived from, 425
Dolomite, 952, 998, 1027
Dredge, 374, 375
Drift bottles, 364, 365
Drift of plants, 791–792
Dynamic computations, 392, 408–411
example, 4
Dynamic equilibrium, principle of, 160–163
Dynamic meter, 392, 403
E
Earth, size of, 9
Earthquake waves (see also Tsunamis), 543, 544
Earth's rotation:
angular velocity, 433
deflecting force, 390, 433–438
East Greenland Current, 659, 660
East Indian Archipelago, basins and water of 736–739
Echinodermata:
reproduction, 324, 325, 326
synopsis, 311–312
Echo sounding (see also Sonic soundings), 76
Ecological groups of animals (see Animal population)
Eddy conductivity, 92
computation from temperature observations, 135–137
Eddy conductivity of the air, 114
Eddy diffusion:
importance to transportation of sediments along bottom, 962–966
lateral, dispersal of suspended material by, 959
Eddy diffusivity, 93
effect of stability on, 476, 477
importance to tongue-like distributions, 504, 507
lateral, 92, 93
importance to sedimentation, 959
importance to tongue-like distributions, 506–507
numerical values, 483, 485
numerical values, 481, 483, 484
Eddy viscosity, 91, 473, 474
influence of stability on, 476
numerical values, 481, 482
related to lateral mixing, 474, 475
Antarctic Circumpolar Current, 621
Equatorial Countercurrent, 634
numerical values, 485
Eel grass:
as primary producer, 303, 893, 936–937
structure and reproduction, 302–303
Eels:
dispersal of larvae, 861–862
homoiosmotic condition, 271
migrations, 811
Ekman current meter, 367, 368
Ekman spiral, 493
Ekman water bottle, 354
Elasmobranchs, 312
osmotic pressure of body fluids, 271
Electric conductivity, 71, 72
Elements derived from earth's crust, 219–222
Elements present in marine organisms, 228, 229
concentration of, 233
Elements present in sea water, 174
table, 176, 177
El Niño, 704, 705
effect on fauna, 274
Emerita:
dispersal of larvae, 859–860
feeding habits, 895
Endemic populations, maintenance of, 863–865
Energy equation, 441, 486
Environment, marine:
antiquity, 281–284
characteristics, 268
classification, 275–280
extent, 274
Environmental factors (see Light, Currents, Oxygen, Salinity, and Temperature)
Equatorial Countercurrent:
Atlantic, 633–637
Indian Ocean, 696
Pacific, 709–712
Equatorial currents (see North and South Equatorial Currents)
Equiscalar curves, 155
Equiscalar surfaces, 154, 155
Equivalent diameters of sedimentary debris, 958
compared to true dimensions, 982
statistical terms derived from, 970, 971
used for classifying sediments, 957, 974
Eroding velocity of ocean currents, 961
Erosion by currents, 41, 960–962
Euphausiids:
as food of whales, 904, 906–907
reproduction, 323
synopsis, 310
Euphotic zone, 774
Eurybathic animals, 806–807
Evaporation:
annual variation, 122
average annual, 120
computation of, 119, 120
diurnal variation, 122, 124
from the Black Sea, 650
from the Mediterranean Sea, 647
in different latitudes, 120, 121
table, 123
latent heat of, 62
observations of, 119
process of, 115–119
Extraterrestrial material in sediments, 952
F
Faeroe-Shetland Channel, flow through, 652–655
Falkland Current, 628, 630
Faunal areas (see Zoogeography)
Feeding mechanisms, 886–898
Filter feeders, 377, 886–892
rate of filtering, 901–902, 930
Fishes (see also under specific fishes):
deep-sea fishes:
adaptations, 828–835, 897
food of, 896–897
dispersal of eggs and larvae, 861, 865
feeding habits, 884, 890, 892
migrations, 811
osmotic regulations, 271
reproduction, 325
synopsis, 312
visual depths, 831–833
year classes, 326–328
Floating adaptations:
in animals, 818, 821–823
in diatoms, 764–765
in dinoflagellates, 765–766
Flocculation of fine sediments, 958
Florida Current, 672, 673–675
compared with Kuroshio, 720
Fluorine, 180
Fog, advection, 118
Foraminifera:
in deep-sea sediments, 983–985
reproduction, 319
synopsis, 304–305
Foraminiferal number, 985
Foraminiferal tests, composition of, 991
Forel scale, 88
Freezing point of sea water, 65–67
Friction:
boundary, 478–481
general terms, 469, 470
simplified terms, 475
Frictional forces, 469
in presence of turbulence, 474–476
Frictional stresses (see also Wind stress), 68, 69
due to lateral turbulence, 474
Antarctic Circumpolar Current, 621
Equatorial Countercurrent, 634
importance to dynamics of ocean currents, 489
due to vertical turbulence, 471–474
Fucus, 286, 291
reproduction, 293
zone, 277
G
Geochemistry:
importance of sediments to, 947
of the ocean waters, 219–222
Geopotential, 403
anomaly, 409
topography, 404
illustrated, 454, 726
of isobaric surfaces, 412–413
Glacier ice (see Icebergs)
Glauconite, 1035, 1036
factors important to formation, 997
frequency of occurrence, 987
Globigerina ooze (see Pelagic sediments), 305
Gradient, 156
Grazers of the sea, 884–886, 901–903
Grazing as a control of diatoms, 901–902
Gulf of California, 730–732
lamination in sediments, 1040
Gulf of Mexico:
bottom topography, 35
currents, 642
oxygen content, 641
water masses, 639–642
Gulf Stream, 672, 675–680
Gulf Stream System, 672
Gulfweed (see Sargassum)
H
Halosphaera, 301, 302
Heat:
conducted through ocean bottom, 110
exchange, ocean-atmosphere, 114, 115
off Norwegian coast, 656
specific, 61, 62
transformed from kinetic energy, 110
transported by ocean currents, 99
Helium, 189
Herring, numbers correlated with copepods, 892, 906, 907
Histogram, 970, 980
Holoplankton:
characteristic types of, 816, 817
dispersal of, 862–863
numbers of species of, 868
Hydrogen-ion (seepH):
related to organisms, 268, 770
Hydrogen sulphide, 187
amounts in sea water, 189
at bottom of basins, 1028
exclusion of animals by, 871, 872
importance to precipitation of iron, 952, 1032
in Black Sea, 651, 917
in sediments, 995
Hydrometers, 53
Hypoplankton, 814
Hypsographic curve, 19
I
Ice (see Sea ice)
Icebergs:
in the Antarctic, 624, 625
in the Arctic, 667, 668
prediction of drift, 668
transporting sedimentary debris, 953, 1043
Indian Ocean:
boundaries, 11
currents, 695–697
oxygen distribution, 697, 698
water masses, 690–695
Indicator species, 791–792, 793, 847, 849, 862–863, 865–867
Individual population succession, 384
Individual time change, 157
Inertia, circle of, 437
motion in, 438, 439
Inorganic precipitates in sediments, 951, 952
Insects, 310
Insular shelf, formation of, 24
Internal waves, 586
comparison between theory and observations, 597–600
currents associated with, 588–590, 594
effect of Corioli's force, 595, 596
effect on results of dynamic computation, 601, 602
importance to mixing, 601
long, 587
observations, 591–595
short, 586
standing, 600, 601
where density varies continuously, 589–591
Interstitial water, 995
Intertidal zone, 276
animals of, 276, 840, 844
Iodine, 183
Ionic activity, 203–205
Ionic product, 205
of calcium carbonate, 205–207, 999
Irminger Current, 682
Irminger Sea, water masses of, 682, 683
Iron, 183
as a limiting factor for diatoms, 769
in red clay, 1031, 1032
precipitation of, 952, 1031, 1032
Isentropic surfaces, 415, 416
Isobaric surfaces, 390, 440
absolute topography, 456, 457
inclination, 410–412, 440
relative topography, 412, 413, 452–455
illustrated, 454, 726
Isobaths, 16
Isotopes in sea water, 47, 49
J
Japan Current (see Kuroshio)
Japan Sea, 734, 735
Jellyfish (see Medusae)
K
Kelp, 287
habitats, 287, 291, 293
structure and reproduction, 292, 293
Knot, 363
Kuroshio, 719, 720, 721
annual variation of temperature, 131, 132
eddy conductivity derived from, 136, 137
Kuroshio Countercurrent, 719
Kuroshio Extension, 719, 721, 722
Kuroshio System, 719
L
Laboratories on board ship, 339, 340
Labrador Current, 665
meeting Gulf Stream, 682
Labrador Sea:
currents, 665, 666
water masses, 663–665
Laminar boundary layer, 479
Laminar flow, 89, 470
Laminarian zone, 277
Laminations in sediments:
deep sea, 1038, 1039
shallow water, 1039–1040
Larvae (see Zooplankton, temporary)
Lateral mixing (see Eddy viscosity and Turbulence)
Law of parallel solenoids, 455
Layer of no motion, determination of, 456, 457
Level, reference, for depths, 10
Level surfaces, 390, 402
Liebig's law of the minimum, 768, 792
Life cycles of animals (see also Reproduction), 283, 319–322
field studies of, 322–323, 845–848, 862–865
Life in the sea, development of, 281–284
Light:
related to animal ecology, 824–839, 851, 899
related plant production, 774–776, 781–782
Limacina, biological studies of, 384
Limnoria, 310
food of, 896
reproduction, 317
Lithium, 182
Littoral system, 276–277
animals of, 800–805
horizontal distribution, 803–805
plants of, 286–295, 302
subdivisions, 275, 276, 286
Local change, 157
Local sequence, 384
Luminescence (see Bioluminescence)
Lunar hours, 548
M
Magnesium, 175
Mammalia:
reproduction, 326
synopsis, 313
Manganese, 184
in red clay, 1029, 1030
nodules and concretions, 952, 1028
Mechanical analysis of sediments, 958, 970
Mediterranean Sea:
bottom topography, 34
currents, 647, 648
formation of bottom water, 645
oxygen content, 648–650
plant nutrients, 245
water masses, 643–646
Mediterranean Water, spreading of, 670, 685, 686, 745
Medusae:
biological studies on, 320, 820
reproduction, 320
synopsis, 306
Meroplankton (see Zooplankton, temporary)
Messengers, 354
Meter wheel, 338
Micro-plants, significance of, 883–884
Migrations:
eel, 811, 861–862
from land to sea, 283, 302
from sea to land, 284
salmon, 811
vertical, 835–839
whales, 811, 905
Mixing length, 472
near a boundary surface, 479
Mollusca:
reproduction of, 324
synopsis of, 310–311
Momentum, transport of, 472, 473
Mucus feeding, 889, 894
Mud flows, 960
N
Nannoplankton, 819
Nansen water bottle, 353, 354
used for collecting phytoplankton, 382
Nathansohn's theory of plant nutrient distribution, 784
Nekton, 281, 810–812
biological factors in movements of, 904–907
Nemertinea, synopsis of, 307
Neon, 189
Nereocystis:
reproduction, 292
structure, 292
Neritic environmental province, 275, 279, 784
Nets, plankton, 376
catching power, 378–379
operation, 380
types, 379
Nitrate:
distribution in basins, 245
distribution in oceans, 241–243
related to deep-water circulation, 754
factors influencing distribution, 246
produced on sea bottom, 995
reduction and denitrification, 915
regeneration, 254–257
seasonal variation, 252, 253
utilization as a measure of production, 932
― 1070 ―Nitrate-nitrogen, ratio to phosphate-phosphorus, 236, 243
Nitrite:
distribution in oceans, 243
produced on sea bottom, 995
Nitrogen, 181
compounds, utilization of by plants, 768
in see water, 252–225
seasonal variation, 252
transformations, 253–255
dissolved:
amounts in sea water, 188
determination, 187
solubility, 188–191
in sediments, 1010, 1011
Nitrogen cycle, 913–916
ammonification, 914
in the sea, 255–257
nitrification, 914
nitrogen assimilation, 915
Nitrogen fixation, 916
Nitrogen-phosphorus ratio in plankton, 236, 768
Nitzschia clasterium, 296, 769
photosynthesis, 781, 933
Noctiluca, 304
reproduction, 319
Normal Water, 51
North Atlantic Current, 673, 680–683
North Atlantic Ocean:
currents, 671–686
oxygen distribution, 686
water masses, 668–671
North Equatorial Current:
Atlantic, 671
Indian Ocean, 696
Pacific, 708, 709, 718, 719
North Pacific Current, 719, 722
North Pacific Ocean:
currents, 718–728
eastern gyral, 723, 724
oxygen distribution, 728–730, 753
water masses, 712–718
North Polar Sea:
bottom topography, 30–32
currents, 661
oxygen content, 662, 663
water masses, 658, 659
North Sea:
currents, 660
water masses, 657
Norwegian Current, 659, 660
fluctuations, 655, 661, 662
Norwegian Sea:
bottom topography, 30–32
currents, 659
inflow of water, 652–656
outflow of water, 652–656
oxygen content, 662
water masses, 656, 657
Nursery areas, 315
Nutritional relationships, 882–898
micro-animals, significance of, 884–886
micro-plants, significance of, 883
O
Obelia, 306
reproduction, 320
Ocean currents, ecological relations of:
animals, 858–869
plants, 782–792
Oceanic environmental province, 275, 278
animals, 821, 827
plants, 763
Oceanographic vessels, 331–333
Oceans:
areas, 13, 15
boundaries of subdivisions, 12
mean depths, 13, 15
volumes, 13, 15
Oikopleura:
feeding mechanism, 888
systematic position, 312
Okhotsk Sea, 733
Oozes, ecological importance of, 278
Organic constituents in Sediments, 949–951, 983–986
Organic environment, 879
Organic matter:
dissolved, utilization of, 911–913
in sediments, 951
chemical composition, 1010
decrease with depth in deposit, 1016
distribution, 1013–1017
factors determining amounts, 1012–1013
quantity, 1008–1010
sources, 951, 1011
Organic production in the sea, 925–926
commercial, 936–937
cycle of organic matter in the sea, 926
in different regions, 937–944
phytoplankton, 927–934
zooplankton, 934–936
Osmotic pressure, function of salinity and temperature, 66, 67
Osmotic relationships of body fluids:
fresh-water animals, 269
marine animals, 269, 271, 839
Oxidation-reduction potential, 211, 212
importance to accumulation of iron in sediments, 1032
importance to accumulation of manganese in sediments, 1031
in sediments, 995–997
Oxygen;
as an environmental factor, 869–873, 903, 913, 917
in organic matter in sediments, 1011
production and consumption of, as index of organic production, 933–934
production by plants, 767, 777, 933
Oxygen, dissolved:
depletion in interstitial water, 995
depletion in relation to nutrient content, 237
determination, 187
relation to pH distribution, 209
solubility, 189–191
Oxygen consumption, bacterial, as a measure of organic carbon, 250
Oxygen content (see under specific geographic regions):
oceanic deep-water, 746, 748, 752–754
Oxygen distribution (see under specific geographic regions):
conditions for stationary, 161, 162
related to deep-water circulation, 754
Oyashio, 721, 733
meeting Kuroshio Extension, 722
Oysters, reproduction of, 316, 324, 846–847, 857
P
Pacific Ocean (see also North Pacific and South Pacific):
boundaries, 11
equatorial region, 706–712
currents, 708–712
oxygen content, 710, 711
phosphate, 710, 711
silicate, 710, 711
water masses, 706–708
oxygen distribution, 728–730, 753
Palagonite, 1027
frequency of occurrence, 987
Pelagic environment and its subdivisions 278
Pelagic sediments (deposits), 972
areas covered by, 977
average percentage of calcium carbonate, 1006
chemical composition, 991, 992
classification, 972–973
color, 978, 979
content of organic matter, 1015
depth range, 978
distribution, 974–978
inorganic constituents, 986–990
iron content, 992, 1030–1032
manganese content, 992, 1028–1031
minerals, 986–990
organic constituents, 983–986
phosphorus content, 992, 1032
radium content, 1034, 1035
rate of deposition, 1038, 1039
texture, 979–982
Pendulum day, 437
Permeability of sediments, 994
Persian Gulf, 690
Peru Current, 701–705
comparison with California Current, 703
organic production in, 942
Petroleum formation in marine sediments, 947, 1009
possible role of bacteria, 996
Pettersson-Nansen water bottle, 352
Phaeocystis, 301
Phillipsite, 1027
frequency of occurrence, 987
pH of sea water, 193
determination, 193, 194
distribution, 208–210
role in carbon dioxide system, 195–202
Phosphate:
as a limiting factor, 768, 788
distribution:
factors influencing, 246, 247
in basins, 245, 246
in oceans, 239–241
related to deep-water circulation, 754
in South Atlantic, 786–788
regeneration, 260–261
in isolated areas, 932
seasonal variation, 258
utilization of, by plants, 768, 931–932
Phosphate-phosphorus, ratio to nitrate-nitrogen, 236, 243
Phosphorescence (see Bioluminescence)
Phosphorite nodules, 952, 1032, 1033
Phosphorus, 182
in red clay, 1030, 1032, 1033
organic, in sea water, 257
Phosphorus cycle in the sea, 260–261, 916
Phosphorus-nitrogen ratio in plankton, 236
Photosynthesis of phytoplankton, 774
energy and illumination, 776
experiments, 777–782, 933
assimilation, 777
Photosynthesis ratio to respiration, 933
Physalia:
reproduction, 320
systematic position, 306
Phytoplankton (see also Plankton):
collection and analysis, 382–383
number of important species in, 762
photosynthesis, 774–782
relation to zooplankton, 898–904
Phytoplankton production, 923–934
factors of (see Diatoms and Dino-flagellates)
index of:
direct census, 927
oxygen production and consumption, 933–934
plant nutrient consumption, 931–933
plant pigment units, 928
Pigments extracted from mud, 969
Plankton (see also Phytoplankton and Zooplankton), 281
adaptations, 821–823
collecting methods, 376–383
equivalents, 929
macro-, micro-, and nannoplankton, 819
neritic, 820
oceanic, 821
Plankton and filter feeders, 886–892
Plant nutrients, 235
and vertical circulation of water, 782–790
convection, 790
regions of divergence and convergence, 787, 788
stabilization, 789
turbulence, 787–789
upwelling, 785–786
factors influencing distribution, 235, 236
renewal in surface layers:
Antarctic region, 620
Equatorial Countercurrent, Atlantic, 636
Equatorial Countercurrent, Pacific, 712
North Atlantic, 682
off coast of California, 725
off coast of Peru, 702
off west coast of South Africa, 628
storage in the sea, 784–785
winter maxima and summer minima, 939
Plants (see also Algae and Eel grass):
higher plants, 302–303
major producers in the sea, 287
Thallophyta, 288–302
Platyhelminthes, 307
Pleurobrachia, 307, 890
Polymerization of water, 47
Population, 162
Porosity of sediments, 993, 994
Portuguese man-of-war (see Physalia)
Potassium, 179
Potential temperature (see Temperature)
Pressure (see also Isobaric surfaces):
as an ecological factor, 273
field of, 405
internal field, 408
total field, 413
units, 55, 170
Pressure gradient, 405
Preying animals, 896–898
Primary food of the sea, 882, 883
Production (see Organic production and Phytoplankton production), 162
importance of, to organic matter in sediments, 1011, 1015
Projections, map, 10
Protozoa:
reproduction, 319
synopsis, 304–305
Pteropod ooze (see Pelagic sediments)
R
Radiation:
absorption in pure water, 80, 81
illustrated, 105, 106
absorption in sea water (see Radiation, extinction coefficients)
effective back, 111–113
extinction coefficients, 82, 84, 85
cause, 87, 88
influence of sun's altitude on, 86, 87
of total energy, 106, 107
from sun and sky, 101–104
heating due to absorption of, 108–110
long-wave, 98
measurements of extinction, 82, 83
nocturnal (see Radiation, effective back)
reflection from ice and snow, 113
reflection from sea surface, 104
scattering, 87
short-wave, 98
solar constant, 102
“surface loss,” 106
Radioacoustic ranging, 341
Radioactive elements, 184
in sediments, 1033–1035
Radiolaria:
reproduction, 319
systematic position, 305
Radiolarian ooze (see Pelagic sediments):
areas covered by, 977
color, 979
depth range, 978
distribution, 975, 976
inorganic constituents, 984, 986–988
organic constituents, 983, 986
radium content, 1034
― 1073 ―Radium, 184
in sediments, 1033–1035
Red clay (see Pelagic sediments):
areas covered by, 977
chemical composition, 991, 992
color, 979
content of organic matter, 1015
depth range, 978
distribution, 975, 976
inorganic constituents, 984, 986–988
iron content, 1030–1032
manganese content, 1029, 1030
organic constituents, 983, 984
phosphorus content, 1030, 1032, 1033
radium content, 1034
rate of sedimentation, 1039
texture, 980–982
Red Sea:
currents, 687–690
oxygen content, 688
water masses, 687, 688
Red Sea water, spreading of, 693, 695, 745
Reducing capacity, 212
in sediments, 996
Red water, 89
Refractive index, 70, 71
Relative relief, 19
Reproduction (see also Life cycles):
related to temperature, 846–849
types, 315
Reproductive distribution, 315
Resting spores in diatoms, 299
Rip currents, 537
importance to beach sediments, 1017, 1018
River water, composition of, 214–216
Rotifera, synopsis of, 307
Roughness length, 479
of sea bottom, 480
of sea surface, 491
Rubidium, 182
S
Sagitta:
as indicator species, 863
reproduction, 322
systematic position, 308
Salinity, 50
as an ecological factor, 770, 839–843
averape surface values, 123, 124
determination, 50–54
origin, 219
periodic variations at surface, 126
range in oceans, 55
units for expressing, 51, 54
Salmon:
migration, 811
transplantations, 850
Salpa, systematic position of, 312
Sardine:
feeding mechanism, 890
quantity fished, 896
Sargassum, 293, 883
reproduction, 293
Saturation coefficients for dissolved gases, 190, 191
Scalar fields, 154–156
Sea cucumbers:
consumption of detritus by, 894
reproduction, 325, 326
synopsis, 311
Sea ice:
influence of freezing on composition of sea water, 216–219
in the Antarctic, 623, 624
in the Arctic, 666, 667
amount influenced by currents, 662
physical properties, 72–74
salinity, 71, 12
transporting sedimentary debris, 954, 1043
Sea level:
ideal, 9
mean, 10, 561
slope:
along North American east coast, 677
in Caribbean Sea, 641, 678
near the equator, Atlantic, 634
near the equator, Pacific, 709
variations, 458–460
Seals, synopsis of, 313
Sea water:
artificial, 185, 186
relation to body fluid, 269
Sedimentation, 946
rate of, 1036–1041
estimated by stratigraphic method, 1038–1040
estimated by supply method, 1040–1041
Seechi disk, 82
Seiches, 538–542
importance to transportation of sediments, 965
on open coasts, 542
Settling velocity of sedimentary debris, 956–959
importance to transportation along bottom, 962–966
size-grade distribution derived from, 970
― 1074 ―Sharks (see Elasmobranchs)
Shorelines, 42–44
classification, 43
Silicate:
as a limiting factor, 769
distribution in oceans, 244–245
related to deep-water circulation, 754
factors influencing distribution, 246
seasonal variation, 261, 262
utilization by plants, 769
Siliceous material in sediments (see Diatom ooze and Radiolarian ooze):
organisms contributing to, 950
Siliceous oozes (see also Pelagic sediments), 973
areas covered by, 977, 978
Siliceous sediments:
diatoms in, 296
radiolaria in, 305
Silicoflagellates, 302
Silicon, 180
cycle in the sea, 262, 263
Sill depth, 25, 147
importance to character of basin water, 150
Caribbean Sea and Gulf of Mexico, 640
East Indian Archipelago, 736–738
of basins in adjacent seas, 37, 38, 738
Size-grade distribution in sediments, 970, 971
represented by cumulative curves, 970, 981
represented by histograms, 970, 980
statistical terms, 970, 971
Skeletal structures of marine organisms:
as constituents of sediments, 949
composition, 231
Sliming of the sea, 290, 291
Snakes, synopsis of, 313
Sodium, 175
Solar constant, 102
Solubility:
calcium carbonate, 205–208
gases, 190, 191
salts, 210–211
Solubility product, 205
Sonic soundings:
equipment, 342, 343
importance to knowledge of bottom topography, 16
Sound energy, absorption of, 78
Soundings:
available for charts of bottom topography, 14–16
methods, 342–344
Sounding velocity, 79
Sound waves:
velocity in sea water, 76, 77, 79
wave length, 77, 78
South Atlantic Ocean:
currents, 627–630
oxygen distribution, 630, 631
water masses, 625–627
South Equatorial Current:
Atlantic, 628, 633
Indian Ocean, 696
Pacific, 708, 709
South Pacific Ocean:
currents, 701–706
oxygen distribution, 728–730
water masses, 698–701
Specific heat, 61, 62
Specific humidity, 116
Specific volume, 57
anomaly, 57, 58
computation, 58
Sphere depth, mean, 19, 20
Sponges:
reproduction, 319
synopsis, 306
Stability, 416–418
influence on turbulence, 91, 92, 476
Stagnant water:
destruction of organic matter in, 1012
development, 1026
Standard depths of observation, 357
Starfish:
bathymetric distribution, 807
synopsis, 311
Stationary distribution, 157
Stationary velocity field, 423
Sterile distribution, 315, 847
Strait of Bab el Mandeb, currents of, 688–690
Strait of Gibraltar, currents of, 646–648
Stratosphere, oceanic, 141
Stream lines, 426
Strontium, 179
Strontium carbonate in radiolarians, 991
Submarine canyons (see Canyons)
Submarine geology, topics of, 22
Submarine topography (see Bottom topography)
Subtropical Convergence, 140
in Southern Oceans, 606
sinking of water in region of:
Indian Ocean, 691
North Atlantic, 670
North Pacific, 714
South Atlantic, 626
South Pacific, 700, 701
― 1075 ―Sues Canal, flow through, 688, 689
Sulphur, 178
cycle of, 917
Surface tension, 70
Suspended particles, 958
importance to extinction of radiation, 88
Suspension of sedimentary debris near bottom, 962–965
Symbiosis, 881–882
T
Temperature:
adiabatic changes, 63–65
annual variation:
at surface, 129, 130
in surface layers, 131–133
theory, 135–137
as an ecological factor, 770, 792–795, 843–858
average surface values, 127
difference, sea-surface minus air, 128, 129
diurnal variation:
at surface, 133, 134
in surface layer, 135
measurements, 347–352
potential, 64
at depths exceeding 4000 m, 747, 749
basin water, 149
bottom water, 749
Caribbean Sea, 640, 641
China Sea and Sulu Sea, 735
Gulf of Mexico, 641
Mediterranean Sea, 644
Mindanao Trench, 739
range, in oceans, 55
Temperature-salinity diagram, 142
illustrating water masses of:
all oceans, 741
equatorial region, Atlantic, 631
equatorial region, Pacific, 707
Indian Ocean, 692
North Atlantic, 669
North Pacific, 713
South Atlantic, 626
South Pacific, 699, 700
Subantarctic region, 612
used for checking data, 358
Teredo:
depredations by, 841
diet, 896
Terrigenous materials in sedments, 948, 949
Terrigenous mud, radium content of, 1034
Terrigenous sediments, 972–974
average percentage of calcium carbonate, 1006
classification, 973, 974
distribution, 972, 975, 976
rate of deposition, 1039, 1040
Texture of sediment:
beach, 1019–1022
bearing on content of organic matter, 1016
continental shelf, 1020–1022
deep sea. 979–982
Texture of sediments, 969–971
Thermal conductivity (see also Eddy conductivity), 60, 61
Thermal expansion, 60
Thermometers, 347–352
protected reversing, 349, 350
unprotected reversing, 350, 351
Thorium, 184
Tidal currents:
Atlantic Ocean, 584, 585
effect of friction, 577–580
influence of bottom topography, 567, 568
in sounds, 568, 569
rotary, 570
due to earth's rotation, 571–573
due to interference, 570
theory, 564
Tidal energy, 569
Tide-producing forces, 545–550
“Tide rips,” 716
Tides:
analysis and prediction, 564
Atlantic Ocean, 581
character, 558
cooscillating, 553
effect of Corioli's force, 555
effect of friction, 574
importance to shallow-water sediments, 1017
independent, 554
meteorological, 559
observations, 359–361
partial, 549, 558
theories, 550–552
Tintinnoinea, systematic position of, 305
Trajectories, 426
Transparency, 85
Transport, volume of, 462–465
Antarctic Circumpolar Current, 615–617
by wind currents, 498
North Atlantic, 683–685
North Pacific, 727, 728
South Atlantic, 628, 629
Transport across the equator:
Atlantic, 637, 685
Pacific, 752
Transportation of particles along bottom, 959–966
effect on shape, size, and composition, 966–967
Transportation of particles by currents, 959
Transportation of sediments to the sea, 953–956
by ice, 953
by organisms, 954
by winds, 954–955
importance to character of Sediments, 1043
Transport of heat by ocean currents, 99
Trawls: beam, otter, and ring, 375, 376
Tripping mechanism, 380
Tropical convergences, 140
Tropical submergence, 849
Troposphere, oceanic, 141
Tsunamis (see also Earthquake waves), 543
contributing to formation of submarine canyons, 42
importance to transportation of sediments, 965
Tunicates, bathymetric distribution of, 807
Turbulence (see also Eddy viscosity and Eddy diffusion), 90–93, 471
horizontal, 477, 478
importance to transportation of sediments, 960, 962–965
influence of stability on, 92, 476, 477
transport of momentum, 472, 473
U
Ulva, 286, 290
Undertow, 537
Units, fundamental, 400
Upwelling:
effect on annual variation of tempcrature, 131, 132
effect on content of plant nutrient in surface layer, 246, 247
importance to organic matter in sediments, 1044
off coast of California, 724, 725
off coast of Peru, 702, 703
off Somali coast, 696
off west coast of North Africa, 671
off west coast of South Africa, 627, 628
process, 140, 501
Urnormal-1937, 51
V
Vapor pressure over sea water, 66, 115, 116
Vector diagrams, 421
Vector fields, 418–420
Velella, 306, 320
Vertebrata, synopsis of, 312
Viscosity (see also Eddy viscosity):
dynamic, 69, 469, 470
kinematic, 470
Volcanic material in sediments, 949
transportation to sea by winds, 955
W
Wake Stream, 676
Water mass, 143
formation, 143–146
Water masses of the oceans (see also under geographic regions), 739–745
Water type, 143
Wave of translation, 537
Waves (see also Internal waves and Wind waves):
caused by earthquakes, 543
contributing to formation of sub-marine canyons, 42
characteristics, 516–521
destructive, 542
effect of Corioli's force on, 520
“tidal,” 542
Whales:
biological factors in movements, 904–905
diatoms on, 299, 881
feeding habits, 892
feeding mechanisms, 314, 891–892
food of, 273, 904–907
migrations, 811
rate of growth, 906
rate of metabolism, 935
reproduction and growth, 326
sounding of, 273
systematic position of, 314
Winches, 333–335
Wind currents, 492
Antarctic Ocean, 617
general character, 395–397
in shallow water, 496
secondary effect of, 500
transport by, 498
velocity, 494
Wind drift of ice, 623, 666
Wind factor, 494
Wind stress, 489–491
Wind waves:
breakers, 536
effect on beaches, 1017
dissipation, 536
energy, 533
forms and characteristics, 523–527
growth, 533
height, 532, 535
importance to beach sediments, 1017–1019
interference, 529
origin, 522
particle velocity, 528
short-crested, 531
Wire ropes, 335–338
Wood-boring organisms, 317, 841, 895–896
Wyville Thompson Ridge as a faunal barrier, 810, 849
X
X-ray methods in sediment studies, 947, 988
Y
Year classes, 326–328
Yellow Sea, 735
Z
Zoogeography:
barriers:
East Pacific, 803
land, 803
Wyville Thompson Ridge, 810, 849
faunal areas, 273, 799–810
Zooplankton (see also Plankton), 812–823
adaptations, 821–823
collection and analysis, 378–382
neritic and oceanic, 820–821
permanent, 816–819
production, 934–936
relation to physical-chemical environment, 823
relation to phytoplankton, 898–904
temporary, 814–815
Zostera (see Eel grass)