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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Asia
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Primary terms
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carbon
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Lesser Antilles
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-
-
-
Cenozoic
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Quaternary
-
Holocene (7)
-
Pleistocene
-
Lake Missoula (5)
-
upper Pleistocene
-
Wisconsinan
-
upper Wisconsinan (1)
-
-
-
-
-
Tertiary
-
Neogene
-
Miocene
-
Columbia River Basalt Group (19)
-
Grande Ronde Basalt (3)
-
Saddle Mountains Basalt (2)
-
upper Miocene (1)
-
Wanapum Basalt (2)
-
-
Pliocene
-
lower Pliocene (1)
-
-
-
Paleogene
-
Eocene
-
Bracklesham Group (1)
-
Chumstick Formation (3)
-
middle Eocene
-
Barton Clay (1)
-
Bartonian (1)
-
Lutetian (1)
-
Tyee Formation (1)
-
-
Swauk Formation (2)
-
upper Eocene
-
Cowlitz Formation (2)
-
Priabonian (1)
-
-
Yamhill Formation (1)
-
-
Oligocene (2)
-
-
-
upper Cenozoic (2)
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Central America (4)
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Chordata
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Vertebrata
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climate change (2)
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inclusions (1)
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intrusions (3)
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Invertebrata
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Porifera (1)
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Protista
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Foraminifera (2)
-
-
-
isotopes
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C-14 (3)
-
Cl-36 (1)
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-
-
stable isotopes
-
C-13/C-12 (6)
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D/H (1)
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Sr-87/Sr-86 (2)
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maps (7)
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Mesozoic
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Cretaceous
-
Dakota Formation (1)
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Lower Cretaceous (2)
-
Upper Cretaceous
-
Bridge Creek Limestone Member (1)
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Campanian (1)
-
Carlile Shale (1)
-
Cenomanian (4)
-
Codell Sandstone Member (1)
-
Greenhorn Limestone (1)
-
Gulfian
-
Eagle Ford Formation (1)
-
-
Tropic Shale (1)
-
Turonian (3)
-
-
-
Jurassic
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Middle Jurassic
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Bathonian (1)
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Upper Jurassic
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Oxfordian (1)
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Triassic (1)
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metal ores
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Portland Hills Anticline
The spatial and temporal evolution of the Portland and Tualatin forearc basins, Oregon, USA
Mist Gas Field, Columbia County, Oregon: ABSTRACT
Structural contour map of top Columbia River Basalt Group (CRBG). The top C...
Provenance of the Hillsboro Formation: Implications for the Structural Evolution and Fluvial Events in the Tualatin Basin, Northwest Oregon
LATE CENOZOIC GEOLOGY OF THE LOWER COLUMBIA RIVER VALLEY, OREGON AND WASHINGTON
Strike-slip faults in the western Columbia River flood basalt province, Oregon and Washington
The pattern of deformation in the western part of the Columbia River flood basalt province contains two key components: (1) anticlinal uplifts of the Yakima Fold Belt with east-northeast to west-southwest trends, and (2) strike-slip fault zones with dominantly northwest trends. It is the abundance and regional extent of the latter that distinguish this area from other parts of the province. There are many northwest-striking, right-lateral, strike-slip faults in the interval from the Willamette Valley eastward to Umatilla (123°W to 119°W longitude). Some of these faults are only a few kilometers long, whereas others are of regional extent (>100 km). Conjugate northeast-striking, left-lateral, strike-slip faults have also been identified but are far less numerous. Local variations in the stress field within basins have produced sets of subsidiary structures by transtension and transpression. These occur where fault zones change trend with respect to the NNW-SSE–oriented maximum principal compressive stress. Strike-slip faulting was active early in the history of the Yakima Fold Belt uplifts, at least by emplacement of the Columbia River Basalt Group lavas, but after the Yakima Fold Belt uplift, spacing had already been firmly established. It is probable that many of these faults are episodically reactivated basement structures that have repeatedly undergone cycles of emergence, burial by flood basalts, and reemergence. Strike-slip deformation appears to have happened simultaneously within the Yakima Fold Belt uplifts and adjacent synclinal basins. However, the pattern and magnitude of deformation differ significantly in the basins compared to the uplifts. The Yakima Fold Belt uplifts have been segmented and shifted many kilometers by strike-slip faults, while displacements within adjacent basins are orders of magnitude less. Within Yakima Fold Belt uplifts, reversals of vergence sometimes occur wherein the frontal (forelimb) thrusts and fold asymmetry switch from one side of the uplift to the other. These changes are accommodated by cross-trending, right-lateral, strike-slip faults of regional extent. The pattern of strike-slip deformation as mapped within basins in many cases appears to be immature and lacking in interconnection. Eruptive vents in the Simcoe backarc volcanic field and Boring lavas are often aligned along strike-slip faults. Pliocene-age Simcoe lava flows have been deformed by both folding and strike-slip faulting within the Klickitat Valley basin. Pleistocene-age deposits are known to be cut by both the Luna Butte and Portland Hills faults. Strike-slip earthquake focal mechanisms have also been determined for some faults.