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首页> 外文期刊>Journal of geophysical research. Planets >Stress-Strain Evolution During Peak-Ring Formation: A Case Study of the Chicxulub Impact Structure
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Stress-Strain Evolution During Peak-Ring Formation: A Case Study of the Chicxulub Impact Structure

机译:峰环形成期间的应力应变进化:螯合型冲击结构的案例研究

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摘要

Deformation is a ubiquitous process that occurs to rocks during impact cratering; thus, quantifying the deformation of those rocks can provide first-order constraints on the process of impact cratering. Until now, specific quantification of the conditions of stress and strain within models of impact cratering has not been compared to structural observations. This paper describes a methodology to analyze stress and strain within numerical impact models. This method is then used to predict deformation and its cause during peak-ring formation: a complex process that is not fully understood, requiring remarkable transient weakening and causing a significant redistribution of crustal rocks. The presented results are timely due to the recent Joint International Ocean Discovery Program and International Continental Scientific Drilling Program drilling of the peak ring within the Chicxulub crater, permitting direct comparison between the deformation history within numerical models and the structural history of rocks from a peak ring. The modeled results are remarkably consistent with observed deformation within the Chicxulub peak ring, constraining the following: (1) the orientation of rocks relative to their preimpact orientation; (2) total strain, strain rates, and the type of shear during each stage of cratering; and (3) the orientation and magnitude of principal stresses during each stage of cratering. The methodology and analysis used to generate these predictions is general and, therefore, allows numerical impact models to be constrained by structural observations of impact craters and for those models to produce quantitative predictions.
机译:变形是一种普遍存在的过程,在冲击陨石坑期间发生岩石;因此,量化这些岩石的变形可以为冲击陨石坑的过程提供一阶限制。到目前为止,尚未与结构观察结果进行混凝烟塘模型内压力和应变条件的具体定量。本文介绍了分析数值影响模型中应力和应变的方法。然后使用该方法来预测峰环形成期间的变形及其原因:一种不完全理解的复杂过程,需要显着的瞬态削弱并导致地壳岩石的重大再分布。由于最近的国际海洋发现计划和国际大陆科学钻探计划钻探奇异花峰内的峰环,允许在数值模型中的变形历史与峰值峰值的结构历史之间直接比较。建模结果与螯合峰环内观察到的变形相一致,约束下列:(1)岩石相对于其初始取向的取向; (2)每阶段的总应变,应变率和剪切类型; (3)在陨石坑的每个阶段期间主应力的定向和大小。用于产生这些预测的方法和分析是一般的,因此允许通过冲击陨石坑的结构观察和那些模型产生定量预测的结构观察来限制数值影响模型。

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