Bitumen veins and Eocene transpression, Neuquén Basin, Argentina
暂无分享,去创建一个
[1] P. Cobbold,et al. Neogene dextral transpression due to oblique convergence across the Andes of northwestern Patagonia, Argentina , 1998 .
[2] C. Sylwan,et al. Modelo Exploratorio en la Faja Corrida de la Cuenca Neuquina, Argentina [PAPER IN SPANISH] Exploration Model in the Thrust Belt of Neuquina Basin, Argentina , 1997 .
[3] J. Cembrano,et al. The Liquiñe Ofqui fault zone: a long-lived intra-arc fault system in southern Chile , 1996 .
[4] J. Parnell,et al. Emplacement of Bitumen (Asphaltite) Veins in the Neuquen Basin, Argentina , 1995 .
[5] J. Hunt,et al. Petroleum Geochemistry and Geology , 1995 .
[6] J. Bredehoeft,et al. Simulations of the Origin of Fluid Pressure, Fracture Generation, and the Movement of Fluids in the Uinta Basin, Utah , 1994 .
[7] E. Nelson,et al. Ridge collision tectonics in terrane development , 1994 .
[8] S. Guoying,et al. Geology and geochemistry of bitumen vein deposits at Ghost City, Junggar Basin, northwest China , 1994, Geological Magazine.
[9] M. Zoback. First‐ and second‐order patterns of stress in the lithosphere: The World Stress Map Project , 1992 .
[10] J. Dewey,et al. Active tectonics of the Andes , 1992 .
[11] R. Gordon,et al. Current plate velocities relative to the hotspots incorporating the NUVEL-1 global plate motion model , 1990 .
[12] C. Barrio. Late Cretaceous-Early Tertiary sedimentation in a semi-arid foreland basin (Neuquén Basin, Western Argentina) , 1990 .
[13] P. Molnar,et al. Relative motion of the Nazca (Farallon) and South American Plates since Late Cretaceous time , 1987 .
[14] R. Forsythe,et al. Geological manifestations of ridge collision: Evidence from the Golfo de Penas-Taitao Basin, southern Chile , 1985 .
[15] P. Barker,et al. The Cenozoic subduction history of the Pacific margin of the Antarctic Peninsula: ridge crest–trench interactions , 1982, Journal of the Geological Society.
[16] Thomas H. Jordan,et al. Present‐day plate motions , 1977 .
[17] G. Steinmann. Geologie von Peru , 1929 .
[18] P. Cobbold,et al. Structure and kinematics of a foothills transect, Lago Viedma, southern Andes (49°30′S) , 1999 .
[19] B. Niviére,et al. Structure of the Andean foothills, Chos Malal region, Neuquen Basin, Argentina , 1996 .
[20] J. Parnell,et al. Petrography and origin of deposits at the Bentheim bitumen mine, north western Germany , 1996 .
[21] D. Figueroa,et al. Inversion of the Mesozoic Neuquén Rift in the Malargüe Fold and Thrust Belt, Mendoza, Argentina , 1995 .
[22] H. Welsink,et al. Tectonic Evolution and Paleogeography of the Neuquén Basin, Argentina , 1995 .
[23] R. Miller. Structural and Tectonic Controls of Basin Evolution in Southwestern Gondwana During the Phanerozoic , 1995 .
[24] M. A. Uliana,et al. Inversion structures and hydrocarbon occurrence in Argentina , 1995, Geological Society, London, Special Publications.
[25] E. R. Verbeek,et al. Structural Evolution of Gilsonite Dikes, Eastern Uinta Basin, Utah , 1992 .
[26] J. Parnell,et al. The Origin of Gilsonite Vein Deposits in the Uinta Basin, Utah , 1992 .
[27] M. Beck. Analysis of late Jurassic-recent paleomagnetic data from active plate margins of South America , 1988 .
[28] C. G. Chase. Plate kinematics: The Americas, East Africa, and the rest of the world , 1978 .
[29] Walter Zöllner,et al. Descripción Geológica de la Hoja 32b, Chos Malal , 1973 .
[30] Herbert. Abraham. Historical review and natural raw materials , 1960 .