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Collaborative Research: Active Tectonics of Northeast Asia

Collaborative Research: Active Tectonics of Northeast Asia
合作研究:东北亚活动构造
批准号:
0106002
负责人:
Roland Burgmann
金额:
$9.91万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-08-01 至 2004-07-31

项目摘要

项目成果

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中文摘要
翻译
0106999 -Scholz 0106002-Burgmann 0105587-King东北亚是太平洋、北美和欧亚板块交汇的地方,是板块构造学最后的前沿之一。北美洲-欧亚大陆板块边界的位置尚未确定.该地区存在着许多较小的微板块,包括鄂霍次克板块、北极板块、白令板块和阿穆尔板块,这些板块的存在、运动速度和边界都还不确定,这使得问题更加复杂。该项目依靠空间大地测量学来研究欧亚和北美板块边界、中间微板块及其与太平洋板块的相互作用的广大变形区。这项调查的动机是最近在东西伯利亚,韩国和日本启动的高精度GPS测量,这为了解这一神秘地区提供了一个重大进展的机会。新的全球定位系统测量结果为构造模型提供了约束条件,这些模型考虑到了板块构造角速度和与板块边界应变积累和释放有关的变形,大地测量分析有助于通过仔细整合区域和全球定位系统数据,约束从中亚到北美西部的变形运动学。新的测量集中在三个不受当前数据约束的地区:库页岛,西伯利亚东部的切尔斯基山脉和堪察加半岛尖端。预期成果将包括改善地点(在北方西伯利亚)欧亚大陆和北美之间的旋转极;更精确地划分了东北亚的板块边界;和存在的限制,位置和现状-鄂霍次克微板块和其他区域块体的日运动。阻止直接反演刚性板块运动的GPS速度的主要问题是,许多GPS站的位移受地震间应变积累的影响,沿着板块边界断层,特别是沿着太平洋俯冲边缘。在我们的研究区域内发生的大地震(如1995年Mw = 7.0和2000年Mw = 6.8库页岛,和1997年Mw = 7.7堪察加事件),变形场进一步受到同震和震后运动的干扰。因此,调查解决了密不可分的区域板块运动学和俯冲带动力学。弹性和粘弹性模型被用来评估地震间的应变积累过程,并估计地震耦合的主要板块边界断层的数量。该模型允许分离的贡献板块边界应变和板块构造角速度的测量GPS速度场。
英文摘要
0106999 - Scholz0106002 - Burgmann0105587 - KingNortheast Asia, where the Pacific, North American, and Eurasian plates come together, is one of the last frontiers of plate tectonics. The location of the North America - Eurasia plate boundary is not well established. The problem is further complicated by a number of smaller microplates in the region, including the Okhotsk, Arctic, Bering, and Amurian plates, whose existence, rates of motion, and boundaries are still uncertain. This project relies on space geodesy to study the broad zone of deformation encompassing the boundary of the Eurasian and North American plates, intervening microplates, and their interaction with the Pacific plate. This investigation is motivated by the recent initiation of high-precision GPS measurements in eastern Siberia, Korea, and Japan, which provide the opportunity for a significant advance in understanding of this enigmatic region. New GPS measurements provide constraints for tectonic models, which take into account plate tectonic angular velocities and deformation associated with strain accumulation and release at the plate boundaries.The geodetic analysis helps constrain the kinematics of deformation from central Asia to western North America through careful integration of regional and global GPS data. New measurements focus on three areas not well constrained by current data: Sakhalin, the Cherskiy Range in eastern Siberia, and the Kamchatka cusp. Expected results will include an improved location (in northern Siberia) of the pole of rotation between Eurasia and North America; more precise delineation of plate boundaries in northeast Asia; and constraints on the existence, location and present-day motion of the Okhotsk microplate and other regional blocks.The major problem preventing a straightforward inversion of GPS velocities for rigid plate motions is that displacements of many GPS stations are affected by inter-seismic strain accumulation along plate boundary faults, especially along the Pacific subduction margin. Where large earthquakes (such as the 1995 Mw = 7.0 and 2000 Mw = 6.8 Sakhalin, and the 1997 Mw = 7.7 Kamchatka events) occurred within our study region, the deformation field is further disturbed by co-seismic and post-seismic motions. Thus, the investigation addresses the inextricably linked regional plate kinematics and subduction zone dynamics. Elastic and visco-elastic models are used to evaluate the inter-seismic strain accumulation process and to estimate the amount of seismic coupling on major plate boundary faults. The modeling allows for separation of the contributions of plate boundary strain and plate tectonic angular velocities to the measured GPS velocity field.
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