课题基金 / 基金详情

Collaborative Research: Geophysical Investigation of a Modern Continent-Continent Collisional Orogen: The SouthernAlps, New Zealand

Collaborative Research: Geophysical Investigation of a Modern Continent-Continent Collisional Orogen: The SouthernAlps, New Zealand
合作研究:现代大陆-大陆碰撞造山带的地球物理调查:新西兰南阿尔卑斯山
批准号:
9725759
负责人:
George Jiracek
金额:
$2.34万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
1998
资助国家:
美国
项目状态:
已结题
起止时间:
1998-03-01 至 2000-02-29

项目摘要

项目成果

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中文摘要
翻译
小行星9725759 在新西兰南岛,太平洋板块和澳大利亚板块的会聚产生了一个相对狭窄(约80公里宽)和不太复杂的活动造山带,比世界上大多数其他地区。 板块边界的主要结构要素是南阿尔卑斯山,那里的垂直运动和伴随的侵蚀速率是世界上最高的,还有阿尔卑斯断层,它具有走滑和倾滑运动的成分。 在这个项目下将要完成的大地电磁工作是南岛板块边界四年合作研究的一部分,涉及南加州大学、麻省理工学院、伍兹霍尔、加州大学伯克利分校、普渡大学、圣地亚哥州立大学、犹他州、地质与核科学研究所(IGNS,新西兰)、维多利亚大学(新西兰)和奥塔哥大学(新西兰)的美国和新西兰科学家。 这两个国家正在提供支助。 该项目的核心是一对横跨南岛的多方面地球物理断面,包括主动震源地震学、海上多通道和OBS数据采集、被动地震学、岩石物理学、大地电磁学、重力测量和地表地质学。 实验的目的是描绘南阿尔卑斯山和邻近地区的地壳和上地幔结构。 迄今为止收集的大地电磁数据已导致南岛中部的高质量大地电磁断面。 这个造山带内部的MT响应具有令人兴奋的承诺,了解南岛的热制度和流变学的深度。 完整的电阻率结构将为地壳应变分配、下地壳的变质作用、地壳与地幔的相对变形、南岛隆升的补偿以及其他几个重要过程提供必要的边界。 然而,目前存在着一个关键的差距,MT覆盖沿着样带由于缺乏陆地车辆进入的主要地区的upl lift通过主要分水岭的南岛。 该项目收集的数据将通过直升机运输支持的6 - 8次新的MT探测来弥补这一差距。 国家安全局的人员将参与这项工作,并将提供人力和后勤支助。 ***
英文摘要
9725759 Jiracek On the South Island of New Zealand, convergence of the Pacific and Australian plates has given rise to a relatively narrow (~80 km wide) and less complex zone of active mountain building than in most other regions of the world. The dominant structural elements of the plate boundary are the Southern Alps where vertical movement and accompanying rates of erosion are among the highest in the world, and the Alpine Fault which has components of both strike- slip and dip-slip movement. The magnetotelluric work that willl be done under this project is part of a four year cooperative study of the South Island plate boundary involving U.S. and New Zealand scientists at USC, MIT, Woods Hole, UC Berkeley, Purdue, San Diego State, Utah, Institute for Geological and Nuclear Sciences (IGNS, NZ), Victoria University (NZ), and Otago (NZ). Support is being provided by both countries. The centerpiece of the project is a pair of multifaceted geophysical transects across the South Island including active source seismology, offshore multichannel and OBS data acquisition, passive seismology, petrophysics, magnetotellurics, gravity measurements, and surface geology. Experiments are aimed at delineating the crustal and upper mantle structure beneath the Southern Alps and adjacent regions. MT data collected so far has led to a high-quality magnetotelluric transect across the central South Island. The MT response of the interior of this orogen holds the exciting promise of understanding the thermal regime and rheology of the South Island at depth. The complete resistivity structure will provide essential bounds on crustal strain partitioning, metamorphism in the lower crust, relative deformation of the crust versus the mantle, compensation of the South Island uplift, and several other important processes. However, there presently exists a crucial gap in the MT coverage along the transect due to lack of land vehicle access across the principal region of upl ift through the Main Divide of the South Island. The data collected in this project will close this gap in coverage with six-eight new MT soundings supported by helicopter transport. Personnel from the IGNS will participate in this effort and will provide manpower and logistical support. ***
期刊论文(0)
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科研奖励(0)
会议论文
US EM Geophysics Community Workshop at the University of California, March, 2009
IRES: U. S.-New Zealand Collaboration on Applied Geothermal Exploration and Assessment
International Workshop on Electromagnetic (EM) Induction in the Earth, October 23-29, 2008 in Beijing, China
18th International Workshop on Electromagnetic (EM) Induction in the Earth (EM) Workshop; El Vendrell, Spain; September 17-23, 2006
国内基金
海外基金
Research on Quantum Field Theory without a Lagrangian Description
  • 批准号:
    24ZR1403900
  • 项目类别:
    省市级项目
  • 资助金额:
    --
  • 批准年份:
    2024
  • 负责人:
    SATOSHI NAWATA
  • 依托单位:
Cell Research
Cell Research
Cell Research (细胞研究)