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COLLABORATIVE RESEARCH: Investigation of the Kinematics of Brittle Deformation Expressed through Patterns of Seismic P and T Axes and Fault Slickenlines using Micropolar Theory

COLLABORATIVE RESEARCH: Investigation of the Kinematics of Brittle Deformation Expressed through Patterns of Seismic P and T Axes and Fault Slickenlines using Micropolar Theory
合作研究:使用微极理论研究通过地震 P 轴和 T 轴模式以及断层光滑线表达的脆性变形的运动学
批准号:
9526047
负责人:
Robert Twiss
金额:
$10.65万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
1996
资助国家:
美国
项目状态:
已结题
起止时间:
1996-02-15 至 1999-01-31

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中文摘要
翻译
;​R o o t E n t y F N C o m p o b j b W o r d d o c u m e n t E O b j E c t P O O l N N4 @ % &'() * +, -。/ F Microsoft Word 6.0 Document MSWordDoc6;​v v ^ & & _ u u f M ^ & W & G v f ^ & GXP v v '5 f ~ t v v ^ & W,& W * S O 5 f ~ t v v ^ & W & G v f ^ & W & G ^ & O & _;u;这是一个合作项目,继续研究微极连续统理论在脆性变形分析中的应用。该研究包括理论和应用两个方面,对活动构造的研究具有重要意义。地震事件和断层面上的滑动线是发生在地壳脆性部分的剪切面上滑动的表现。该滑动适应由断层的方向和滑动的方向确定的特定几何形变。所有这些剪切事件的集合在一个给定的体积中容纳了该体积的脆性变形。如果我们假设这种脆性变形是构造变形的精确反映,我们可以反演地震震源机制数据或剪切面/滑线数据来确定构造变形的几何形状。这类数据的反演需要一个与观测相适应的变形模型。微极变形模型是一个连续体模型,它包括刚性断块的旋转对任意给定剪切面滑动方向的影响,这是其他变形模型所不包括的。因此,与其他反演技术相比,使用该模型可以从数据中提取更多的运动学细节。;Oh +' 0 $ H l D H R:\WWUSER\TEMPLATE\NORMAL。如果你是我的朋友,你会发现我是你的朋友,我是你的朋友9526105 Felicia Smith Felicia Smith @ M?L @ @ m ?L @ Microsoft Word 6.0 2;e = e a a a j j j j j j j j j 1 " " " a m T 5 j j j j这是一个继续研究微极连续统理论在脆性变形分析中的应用的合作项目。该研究包括理论和应用两个方面,对活动构造的研究具有重要意义。地震事件和断层面上的滑动线是发生在地壳脆性部分的剪切面上滑动的表现。该滑动适应由断层的方向和滑动的方向确定的特定几何形变。所有这些剪切事件的集合在一个给定的体积中容纳了该体积的脆性变形。如果我们假设这种脆性变形是构造变形的精确反映,我们可以反演地震震源机制数据或剪切面/滑线数据来确定构造变形的几何形状。这类数据的反演需要一个与观测相适应的变形模型。微极变形模型是一个连续体模型,它包括了刚性断块的旋转对任意给定剪切面滑动方向的影响,这是其他变形模型所不包括的。因此,与其他反演技术相比,使用该模型可以从数据中提取更多的运动学细节。
英文摘要
; R o o t E n t r y F N C o m p O b j b W o r d D o c u m e n t E O b j e c t P o o l N N 4 @ % & ' ( ) * + , - . / F Microsoft Word 6.0 Document MSWordDoc Word.Document.6 ; v v ^ & & _ u u f M ^ & W & G V F ^ & GXP v v '5 F ~ t j ^ & w,& w* S o5 F ~ t v v ^ & & _8 F f M f M EU VW ^ & W & G V F ^ & W & G ^ & O & _ ; u ; t O1 u ^ & w & w O6 ^ & O & O u 9526047 Twiss This is a collaborative project to continue investigation of the application of micropolar continuum theory to the analysis of brittle deformation. This research consists of theoretical and applied elements, both of which have significant implications for the study of active tectonics. Seismic events and slickenlines on fault surfaces are manifestations of slip on shear planes that occurs in the brittle part of the Earth s crust. The slip accommodates a specific geometry of deformation of defined by the orientation of the fault and the direction of slip. The set of all such shearing events in a given volume accommodates the brittle deformation of that volume. If we assume that this brittle deformation is an accurate reflection of the tectonic deformation imposed, that we can invert the seismic focal mechanism data or the shear plane/slickenline data to determine the geometry of the tectonic deformation. The inversion of such data requires a deformation model that one fits to the observations. The micropolar model of deformation is a continuum model that includes the effects o f the rotation of rigid fault blocks on the slip directions in any given shear plane, which other deformation models do not include. Thus, using this model permits the extraction of more kinematic detail from the data than other inversion techniques provide. ; Oh +' 0 $ H l D h R:\WWUSER\TEMPLATE\NORMAL.DOT S u m m a r y I n f o r m a t i o n ( $ 9526105 Felicia Smith Felicia Smith @ M?L @ @ M?L @ Microsoft Word 6.0 2 ; e = e a E a j j j j j j j 1 " " " A m T 5 j j j j j ~ j j j j x 9526047 Twiss This is a collaborative project to continue investigation of the application of micropolar continuum theory to the analysis of brittle deformation. This research consists of theoretical and applied elements, both of which have significant implications for the study of active tectonics. Seismic events and slickenlines on fault surfaces are manifestations of slip on shear planes that occurs in the brittle part of the Earth s crust. The slip accommodates a specific geometry of deformation of defined by the orientation of the fault and the direction of slip. The set of all such shearing events in a given volume accommodates the brittle deformation of that volume. If we assume that this brittle deformation is an accurate reflection of the tectonic deformation imposed, that we can invert the seismic focal mechanism data or the shear plane/slickenline data to determine the geometry of the tectonic deformation. The inversion of such data requires a deformation model that one fits to the observations. The micropolar model of deformation is a continuum model that includes the effects of the rotation of rigid fault blocks on the slip directions in any given shear plane, which other deformation models do not include. Thus, using this model permits the extraction of more kinematic detail from the data than other inversion techniques provide.
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Investigation of the Kinematics of Block Rotations Through Patterns of Seismic P and T Axes and Fault Slickenline Using Micropolar Theory
  • 批准号:
    9219633
  • 项目类别:
    Standard Grant
  • 资助金额:
    $12.5万
  • 财政年份:
    1993
  • 负责人:
    Robert Twiss
  • 依托单位:
Seismic Microzonation: Methods for Linking Land Use Planning and Geological Knowledge
  • 批准号:
    8508404
  • 项目类别:
    Standard Grant
  • 资助金额:
    $16.23万
  • 财政年份:
    1985
  • 负责人:
    Robert Twiss
  • 依托单位:
Doctoral Dissertation in Geophysics
  • 批准号:
    7815056
  • 项目类别:
    Standard Grant
  • 资助金额:
    $1.41万
  • 财政年份:
    1978
  • 负责人:
    Robert Twiss
  • 依托单位:
Creep Properties of Ultrafine Grained Rocks
  • 批准号:
    7815206
  • 项目类别:
    Standard Grant
  • 资助金额:
    $7.51万
  • 财政年份:
    1978
  • 负责人:
    Robert Twiss
  • 依托单位:
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
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