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NARROW
GeoRef Subject
-
all geography including DSDP/ODP Sites and Legs
-
Africa
-
Central Africa
-
Angola
-
Cuanza Basin (1)
-
-
Congo (1)
-
-
Madagascar (1)
-
North Africa
-
Egypt
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Nile Delta (1)
-
-
Maghreb (2)
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Morocco (4)
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Tunisia (1)
-
Western Sahara (2)
-
-
Southern Africa
-
Karoo Basin (1)
-
Namibia
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Luderitz Namibia (1)
-
-
Orange River (1)
-
South Africa
-
Cape Province region (1)
-
Eastern Cape Province South Africa
-
Cape Town South Africa (1)
-
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Northern Cape Province South Africa (1)
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Western Cape Province South Africa (1)
-
-
-
West Africa
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Benue Valley (1)
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Ghana (1)
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Mauritania (1)
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Nigeria
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Niger Delta (4)
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Senegal (2)
-
-
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Antarctica
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Amundsen Sea (2)
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Antarctic ice sheet
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East Antarctic ice sheet (2)
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West Antarctic ice sheet (2)
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Antarctic Peninsula
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Marguerite Bay (1)
-
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East Antarctica (2)
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West Antarctica (2)
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Wilkes Land (1)
-
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Arctic Ocean
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Barents Sea (9)
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Chukchi Sea (1)
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Lomonosov Ridge (2)
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Norwegian Sea
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Icelandic Plateau (1)
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Yermak Plateau (3)
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Arctic region
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Greenland (2)
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Svalbard
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Asia
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Arabian Peninsula
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Far East
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China
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Japan
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Israel
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Turkey
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Primorye Russian Federation (1)
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Sakhalin Russian Federation
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Siberia (1)
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Transbaikalia (1)
-
-
Atlantic Ocean
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Equatorial Atlantic (1)
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Mid-Atlantic Ridge
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TAG hydrothermal field (1)
-
-
North Atlantic
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Amazon Fan (2)
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Baltic Sea
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Gulf of Finland (1)
-
-
Barbados Ridge (2)
-
Bay of Biscay
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Vilaine Bay (1)
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Blake Plateau
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Sigsbee Escarpment (2)
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Gulf of Saint Lawrence (2)
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Kane fracture zone (1)
-
Labrador Sea
-
Labrador Shelf (1)
-
-
Little Bahama Bank (2)
-
Long Island Sound (1)
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North Sea
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Kattegat (2)
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Norwegian Channel (2)
-
-
Northeast Atlantic
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Galicia Bank (1)
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Iberian abyssal plain (1)
-
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Northwest Atlantic
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Demerara Rise (1)
-
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Northwest Providence Channel (1)
-
Reykjanes Ridge (1)
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Rockall Bank (1)
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Sable Island Bank (1)
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Scotian Shelf (6)
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Scotian Slope (1)
-
Sohm abyssal plain (1)
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Straits of Florida (6)
-
TAG hydrothermal field (1)
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Tongue of the Ocean (1)
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Wilmington Canyon (3)
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Romanche fracture zone (2)
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South Atlantic
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Espirito Santo Basin (1)
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Lower Congo Basin (1)
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Rio Grande Rise (1)
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Southeast Atlantic (6)
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West Atlantic (3)
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Ontario (1)
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Western Canada
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Alberta (1)
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Northwest Territories (4)
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Canterbury Basin (1)
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Caribbean region
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Antilles
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Lesser Antilles
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Trinidad and Tobago (1)
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Virgin Islands
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-
-
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Bahamas (15)
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-
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Cascade Range (2)
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Cascadia subduction zone (2)
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Central America
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Costa Rica (2)
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Guatemala (1)
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Central Basin (1)
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Chicxulub Crater (1)
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Columbus Basin (2)
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Commonwealth of Independent States
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Russian Federation
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Baikal rift zone (2)
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Buryat Russian Federation
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-
-
Irkutsk Russian Federation (2)
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Lake Baikal (10)
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Lena River (1)
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Primorye Russian Federation (1)
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Russian Far East (1)
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Russian Pacific region (2)
-
Sakhalin Russian Federation
-
Kuril Islands (1)
-
-
Transbaikalia (1)
-
-
-
Crater Lake (1)
-
DSDP Site 504 (1)
-
East Pacific Ocean Islands
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Hawaii
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Honolulu County Hawaii
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Malta (1)
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Western Europe
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France
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United Kingdom
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Great Britain
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England
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Scotland
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Hebrides (1)
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Orkney Islands (1)
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Shetland Islands (4)
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-
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-
-
-
Glacier Bay (2)
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Grand Banks (4)
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Hudson Canyon (1)
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Indian Ocean
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Arabian Sea
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Persian Gulf (2)
-
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Bay of Bengal
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Bengal Fan (1)
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East Indian Ocean (1)
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Exmouth Plateau (1)
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Central Indian Ridge (1)
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Ninetyeast Ridge (1)
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Red Sea (4)
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Timor Sea (1)
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West Indian Ocean (2)
-
Wharton Basin (1)
-
-
Indian Ocean Islands
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Madagascar (1)
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Maldive Islands (1)
-
-
International Ocean Discovery Program
-
Expedition 349 (1)
-
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Kerguelen Plateau (2)
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Krishna-Godavari Basin (1)
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Lake Washington (1)
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Long Island (2)
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Malay Archipelago
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Borneo (1)
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Mediterranean region
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Aegean Islands (1)
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Calabrian Arc (1)
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Ionian Islands (1)
-
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Mediterranean Sea
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East Mediterranean
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Adriatic Sea (1)
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Aegean Sea (2)
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Black Sea (1)
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Eratosthenes Seamount (1)
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Florence Rise (1)
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Ionian Sea (5)
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Levantine Basin (1)
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Hellenic Trench (2)
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Mediterranean Ridge (3)
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Tyrrhenian Sea (7)
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Mexico
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Great Lakes region (1)
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North West Shelf (2)
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Oceania
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Tonga (1)
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ODP Site 642 (1)
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-
Pacific Ocean
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East Pacific
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East Pacific Rise (16)
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-
Bowie Seamount (1)
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Cleft Segment (1)
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Loihi Seamount (2)
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Monterey Canyon (6)
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Murray fracture zone (1)
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Navarin Basin (2)
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Panama Basin (2)
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Peru-Chile Trench (4)
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Chile Ridge (1)
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Manihiki Plateau (2)
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Nazca Ridge (1)
-
-
-
Equatorial Pacific (4)
-
North Pacific
-
Aleutian Ridge (1)
-
Aleutian Trench (1)
-
Bering Sea
-
Bowers Ridge (2)
-
Navarin Basin (2)
-
Norton Sound (1)
-
-
Mid-Pacific Mountains
-
Resolution Seamount (1)
-
-
Northeast Pacific
-
Bowie Seamount (1)
-
Cascadia Basin (2)
-
Cascadia Channel (1)
-
Clarion fracture zone (1)
-
Clipperton fracture zone (2)
-
Cobb Seamount (1)
-
Gorda Rise (1)
-
Gulf of Alaska (4)
-
Juan de Fuca Ridge
-
Cleft Segment (1)
-
Endeavour Ridge (3)
-
-
Loihi Seamount (2)
-
Mendocino fracture zone (2)
-
Middle America Trench (2)
-
Monterey Canyon (6)
-
Monterey Fan (3)
-
Murray fracture zone (1)
-
Navarin Basin (2)
-
Norton Sound (1)
-
Queen Charlotte Basin (1)
-
San Diego Trough (1)
-
Santa Monica Basin (3)
-
-
Northwest Pacific
-
Bowers Ridge (2)
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Celebes Sea (1)
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Emperor Seamounts (1)
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Hess Rise (1)
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Japan Sea (1)
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Japan Trench (1)
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Nankai Trough (2)
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Okhotsk Sea (1)
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Shatsky Rise (2)
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Manila Trench (1)
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-
Sulu Sea (1)
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Taiwan Strait (1)
-
-
-
South Pacific
-
Southeast Pacific
-
Chile Ridge (1)
-
Manihiki Plateau (2)
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Nazca Ridge (1)
-
-
Southwest Pacific
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Banda Sea (1)
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Cook Strait (2)
-
Coral Sea
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Marion Plateau (1)
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Queensland Plateau (1)
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-
Java Sea (1)
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Macquarie Ridge (1)
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North Fiji Basin (1)
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-
-
West Pacific
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Indonesian Seas
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-
Java Sea (1)
-
-
Northwest Pacific
-
Bowers Ridge (2)
-
Celebes Sea (1)
-
Emperor Seamounts (1)
-
Hess Rise (1)
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Japan Sea (1)
-
Japan Trench (1)
-
Kumano Basin (1)
-
Mariana Trench (1)
-
Mariana Trough (1)
-
Nankai Trough (2)
-
Okhotsk Sea (1)
-
Philippine Sea
-
Parece Vela Basin (2)
-
-
Shatsky Rise (2)
-
South China Sea
-
Manila Trench (1)
-
-
Sulu Sea (1)
-
Taiwan Strait (1)
-
-
Resolution Seamount (1)
-
Southwest Pacific
-
Banda Sea (1)
-
Cook Strait (2)
-
Coral Sea
-
Marion Plateau (1)
-
Queensland Plateau (1)
-
-
Java Sea (1)
-
Macquarie Ridge (1)
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North Fiji Basin (1)
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Tasman Sea (1)
-
-
-
-
Pacific region (3)
-
Pacific-Antarctic Ridge (1)
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Invertebrata
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Primary terms
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Emplacement and landscape controls on ancient submarine volcanism: 3D seismic geomorphological analysis of Cretaceous volcanic activity in the Browse Basin, Australian North West Shelf
The Lomonosov Ridge, central Arctic Ocean – the world's longest submarine ridge of continental origin: outline of the history of exploration, morphology, sediment deposition and exhumation of the North American and Central ridge segments
A Partially Buried Shipwreck Site: Implication from the Laoniu Reef Shipwreck No. 2
A salty snapshot: extreme variations in basal erosion patterns preserved in a submarine channel
Morphological evidence for the extension of the Zabargad Transform Fault Zone to the Saudi Arabian Red Sea margin
Seismic stratigraphy of the southern Eratosthenes High, eastern Mediterranean Sea: growth, demise and deformation of three superposed carbonate platforms (Mesozoic–Cenozoic)
Sediment waves control origins of submarine canyons: COMMENT
Abstract This volume covers multidisciplinary Research and Development contributions on geology, geophysics, bathymetric and biologic aspects, towards data sampling and acquisition, data analysis and its results, and innovative ways of data access. It also presents the development of processes to map, harmonize and integrate marine data across EEZ boundaries, an impressive example of which is the European EMODnet (European Marine Observation and Data network) initiative. EMODnet assembles scattered and partially hidden marine data into continentally harmonized geospatial data products for public benefit and increasingly within overseas collaboration. The volume also aims to shed light on an evaluation of biological and mineral resources and environmental assessments at continental shelf to slope depths. Western Pacific examples provide excellent case studies for this topic.
Discovering Europe's seabed geology: the EMODnet concept of uniform collection and harmonization of marine data
Abstract Maritime spatial planning, management of marine resources, environmental assessments and forecasting all require good seabed maps. Similarly there is a need to support the objectives to achieve Good Environmental Status in Europe's seas by 2020, set up by the European Commission's Marine Strategy Framework Directive. Hence the European Commission established the European Marine Observation and Data Network (EMODnet) programme in 2009, which is now in its fourth phase (2019–21). The programme is designed to assemble existing, but fragmented and partly inaccessible, marine data and to create contiguous and publicly available information layers which are interoperable and free of restrictions on use, and which encompass whole marine basins. The EMODnet Geology project is delivering integrated geological map products that include seabed substrates, sedimentation rates, seafloor geology, Quaternary geology, geomorphology, coastal behaviour, geological events such as submarine landslides and earthquakes, and marine mineral occurrences. Additionally, as a new product during the ongoing and preceding phase of the project, map products on submerged landscapes of the European continental shelf have been compiled at various time frames. All new map products have a resolution of 1:100 000, although finer resolution is presented where the underlying data permit. A multi-scale approach is adopted whenever possible. Numerous national seabed mapping programmes worldwide have demonstrated the necessity for proper knowledge of the seafloor. Acting on this, the European Commission established the European Marine Observation and Data Network (EMODnet) programme in 2009. The national geological survey organizations of Europe have a strong network of marine geological teams through the Marine Geology Expert Group of the association of European geological surveys (Eurogeosurveys). This network was the foundation of the EMODnet Geology consortium which today consists of the national geological surveys of Finland, the UK, Sweden, Norway, Denmark, Estonia, Latvia, Lithuania, Poland, The Netherlands, Belgium, France, Ireland, Spain, Italy, Slovenia, Croatia, Albania, Greece, Cyprus, Malta, Russia, Germany, Montenegro and Iceland, as well as marine teams of research organizations in Portugal (IPMA), Bulgaria (IO-BAS), Romania (GeoEcoMar), the UK (CEFAS), Greece (HCMR) and Ukraine (PSRGE, replaced in the fourth phase by Institute of Geological Sciences, NAS of Ukraine). The consortium is further strengthened with experts from six universities: Edge Hill University (UK), Sapienza University of Rome (Italy), University of Tartu (Estonia), University of Crete through FORTH-ICS, Institute of Marine Science and Technology of Dokuz Eylul University (Turkey), and EMCOL Research Centre of Istanbul Technical University – altogether, 30 partners and nine subcontractors. The EMODnet Geology programme is now in its fourth phase, which started in September 2019. In addition to geological information, the wider EMODnet programme aims to also bring together information from European seas on seabed habitats, physical properties, chemistry, biology, human activities and hydrography. This paper describes the EMODnet Geology project and the different end products which were delivered in the end of the third phase and will be further developed during the recent fourth phase of the project.
Abstract Analyses of high-resolution multibeam and sub-bottom profiling data, acquired during marine geological field cruises between 2017 and 2019 in the eastern Gulf of Finland (Baltic Sea), enabled the detailed mapping of Quaternary deposits, and revealed diverse submerged glacial and post-glacial landforms (e.g. streamlined moraine ridges, large retreat moraine ridges, De Geer moraines and kettle holes). The morphology of these glacial features provides evidence of the ice-sheet retreat direction and rate throughout the deglaciation of the region, which occurred between 13.8 and 13.3 ka BP (Pandivere–Neva Stage) and 12.25 ka BP (Salpausselkä I Stage). Analysis of sub-bottom profiling, supported by piston long-core sampling, indicates periods of bottom erosion/non-deposition during the Holocene caused by relative water-level regressions. Significant negative relief features are also observed in the area for the first time. These linear and curved V-shaped furrows are several kilometres long and 5 m deep, and are tentatively ascribed to bottom current and gas-seepage processes.
Revealing the secrets of Norway's seafloor – geological mapping within the MAREANO programme and in coastal areas
Abstract Results from geological mapping within the MAREANO (Marine Areal Database for Norwegian Coasts and Sea Areas) programme and mapping projects in the coastal zone reveal a rich and diverse seafloor in Norwegian territories. The geomorphology and sediment distribution patterns reflect a complex geological history, as well as various modern-day hydrodynamic processes. By early 2019, MAREANO has mapped more than 200 000 km 2 ( c. 10%) of Norwegian offshore areas, spanning environmental gradients from shallow water to more than 3000 m depth, with ocean currents in places exceeding 1 m s −1 and water temperatures below −1°C. Inshore, along the 100 000 km-long Norwegian coastline, the Geological Survey of Norway (NGU) has conducted a series of seabed mapping projects in collaboration with local communities, industry and other stakeholders, resulting in detailed seabed and thematic maps of seabed properties covering c. 10 000 km 2 (11% of the areas). Bathymetric and geological maps produced by MAREANO and coastal mapping projects provide the foundation for benthic habitat mapping when combined with biological and oceanographic data. Results from the mapping conducted over the past decade have significantly increased our understanding of Norway's seabed and contributed to the knowledge base for sustainable management. Here we summarize the main results of these mapping efforts.
Abstract Through Ireland's national seabed mapping programme, Integrated Mapping for the Sustainable Development of Ireland's Marine Resource (INFOMAR), the collaboration between Geological Survey Ireland and the Marine Institute continues to comprehensively map Ireland's marine territory in high resolution. Through its work, the programme builds on earlier Irish seabed mapping efforts, including the Irish National Seabed Survey project in producing seabed mapping products that support Ireland's blue economy, European marine policy and international efforts to understand our global oceans. INFOMAR uses a variety of marine technologies to deliver accurate bathymetric maps and useful data products to end users through a free and open source licensing agreement. To reflect the diversity of applications these data products serve, a series of four case studies are presented here focusing on marine geophysical and geological data from locations within Ireland's marine territories. The case studies illustrate how data generated through seabed mapping may be interpreted to directly impact the generation of blue knowledge across a variety of marine environments ranging from shallow coastal and shelf waters to the deep oceanic depths of the continental slope of Ireland's marine area. The impact of Ireland's seabed mapping efforts is further considered in the context of national, European and international initiatives where Ireland's marine knowledge resource is leveraged to deliver positive benefit to the programme's stakeholders.
Abstract The European Marine Observation and Data Network (EMODnet) Project provides freely available data on European seas. The main purpose of EMODnet is to overcome the fragmentation and dishomogeneity of the available data, providing access to a harmonized and interoperable database. The EMODnet Geology Lot includes information at multiple scales on the seabed and its substrate ( http://www.emodnet-geology.eu/ ). The dataset on ‘Geological events and probabilities’ collects information on landslides, earthquakes, volcanic structures, active tectonics, tsunamis and fluid emissions. The Geological Survey of Italy, which coordinates the collation of ‘Geological events and probabilities’ data, provided guidelines to compile layers complemented by comprehensive and detailed patterns of attributes for each feature in order to characterize each type of geological event. Occurrences of events are often associated with each other, particularly in tectonically active areas. Geological events affect both submerged and coastal environments. Data gathered by EMODnet Geology provide a good basis for further studies, contributing to the outlining of different tectonic settings and providing support to the use of marine resources, as well as to the management of marine-coastal areas particularly regarding the identification and assessment of geological and environmental hazards.
Geological controls on dispersal and deposition of river flood sediments on the Hidaka shelf, Northern Japan
Abstract The distribution and characteristics of marine surface sediments are a basic marine geological information. Large river floods are a frequent natural hazard that transport substantial terrigenous sediments into the marine environment. In August 2003, TY ETAU (0310) caused heavy rainfall in the southern coast of Hokkaido, north Japan, where some mountainous rivers in the Hidaka region flooded. Two deposition modes for the 2003 flood sediments can be identified by comparing the pre- and post-flood surface sediment distribution. Shore-normal shallow depressions off the mouth of the Saru and Atsubetsu rivers served as channels for the discharged floodwater preventing dispersion and maintaining the necessary water density to transport the materials as density bottom currents. This action also promoted long-distance transport of flood materials across the continental shelf. Absence of depression on the inner shelf off the mouth of the Niikappu and Shizunai rivers may have dispersed floodwaters near the river mouth and deposited the flood materials close to the shore. Marine geological mapping suggests that the differences in submarine topography (the presence or absence of shallow depressions) are closely related to the regional geological structure. Thus, submarine geology is a controlling factor of the seafloor environments influenced by the river flood.