Collaborative Research: Testing Models of Mesozoic Arc Collision and Accretion in the Northwest U.S. Cordillera, Eastern Oregon, Using Sedimentary Provenance and Basin Analysis
Collaborative Research: Testing Models of Mesozoic Arc Collision and Accretion in the Northwest U.S. Cordillera, Eastern Oregon, Using Sedimentary Provenance and Basin Analysis
批准号:
0537691
负责人:
Rebecca Dorsey
金额:
$19.61万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-02-01 至 2010-01-31
中文摘要
美国西部科迪勒拉地区侏罗纪地壳变形的板块构造背景和区域控制仍然知之甚少,尽管与这个问题相关的研究历史丰富。一些研究推断侏罗纪科迪勒拉边缘存在非碰撞的安第斯型弧-沟体系,但俄勒冈东部和内华达西北部的新构造和地层资料与晚三叠世至晚侏罗世的长期弧-弧碰撞和大型碰撞盆地生长模型相一致。俄勒冈州东部的蓝山省为评估弧碰撞在科迪勒拉构造中的作用提供了一个很好的试验场。该地区包含古生代和中生代岩石,它们代表了两条断裂的岩浆弧,其间有一个海洋俯冲杂岩,以及被称为“伊泽盆地”的厚沉积重叠组合。伊泽盆地地层包含了晚三叠世至晚侏罗世期间影响俄勒冈州及周边地区的构造过程和事件的记录。该研究验证了一个新的假设,即蓝山省是由长期的弧-弧碰撞、弧形地体的合并、大型海相碰撞盆地的生长,以及这些地体最终向北美西部的逆冲和初始增生而形成的。通过对晚三叠世至晚侏罗世地层、沉积物源和盆地演化的详细研究,pi正在测试碰撞盆地假说。主导假说对页岩中的微量元素和钕同位素特征、古砂岩中的碎屑锆石年龄群和框架矿物学以及沉积岩中的区域地层关系进行了具体预测。综合物源和地层分析将为盆地演化和造山提供新的信息,使我们能够区分不同的构造假说,并评价侏罗纪时期弧碰撞和增生在科迪勒拉山脉造山中的作用。该研究解决了长期存在的关于中生代北美西部大陆地壳生长和组装的边界条件和驱动力的问题。该项目为俄勒冈大学和华盛顿州立大学的研究生和本科生的培训和教育做出了贡献。学生直接参与现场和实验室的方法,研究方法,并解决关键问题,因为他们在研究生和本科论文的进展。所有参与者都积极参与与古生物学家、构造地质学家、岩石学家和地球物理学家的合作,他们正在努力破译蓝山的构造演化。地区。这为科学发现创造了新的机会,通过多学科研究和大学、美国地质调查局和州机构的广泛专业人员和学生之间的相互合作。
英文摘要
The plate-tectonic setting and regional controls on Jurassic crustal deformation in the western U.S. Cordillera remain poorly understood, despite a rich history of research related to this question. Some studies have inferred a non-collisional Andean-type arc-trench system for the Jurassic Cordilleran margin, but emerging structural and stratigraphic data from eastern Oregon and NW Nevada are consistent with a model for protracted arc-arc collision and growth of a large collisional basin during Late Triassic to Late Jurassic time. The Blue Mountains Province of eastern Oregon provides an excellent testing ground for evaluating the role of arc collision in Cordilleran tectonics. This region contains Paleozoic and Mesozoic rocks that represent two dismembered magmatic arcs, an intervening oceanic subduction complex, and a thick sedimentary overlap assemblage known as the "Izee basin". Izee basinal strata contain a record of tectonic processes and events that affected Oregon and surrounding areas during Late Triassic to Late Jurassic time. This research is testing a a new hypothesis that the Blue Mountains Province evolved by protracted arc-arc collision, amalgamation of arc terranes, growth of a large marine collisional basin, and finally thrusting and initial accretion of these terranes to western North America. The PIs are testing the collisional-basin hypothesis through a detailed study of Late Triassic to Late Jurassic stratigraphy, sedimentary provenance, and basin evolution. The leading hypothesis makes specific predictions about trace-element and Neodymium-isotopic signatures in shales, detrital zircon age populations and framework mineralogy in ancient sandstones, and regional stratigraphic relationships in sedimentary rocks. Integrated provenance and stratigraphic analysis will provide new information about basin evolution and mountain building that will allow us to discriminate between tectonic hypotheses and evaluate the role of arc collision and accretion in Cordilleran mountain building during Jurassic time. The research addresses long-standing questions about the boundary conditions and driving forces that led to the growth and assembly of continental crust in western North America during Mesozoic time. The project is contributing to the training and education of graduate and undergraduate students at the University of Oregon and Washington State University. Students are directly involved in field and laboratory methods, research methodology, and critical problem solving as they progress toward graduate and undergraduate theses. All participants are actively engaged in collaborations with paleontologists, structural geologists, petrologists and geophysicists, who are working to decipher the tectonic evolution of the Blue Mountains. region. This is creating new opportunities for scientific discovery through multidisciplinary research and mutual cooperation among a wide range of professionals and students at universities, the U.S. Geological Survey, and state agencies.
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依托单位:
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