3D modeling of the hydroisostasy effect with a configuration of Moho surface of the Sea of Okhotsk close to real

R. Bulgakov
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引用次数: 1

Abstract

Interrelation between global sea level changes during Glacial–Interglacial periods and Earth surface deformations is studied using digital simulation methods. During Earth surface deformations, the deformation amplitude is expected to depend on variable thickness of the upper lithospheric layer. 3D modeling allows to take into account thickness variation of the lithospheric layer. In this work, 3D modeling of hydroisostasy under marine transgression similar to Interglacial ones for the Sea of Okhotsk has been made with creating a mesh on the base close to real bathimetry of the Sea of Okhotsk and Moho surface configuration. Simulation has been done by finite element method by Elmer software suite. As a result, relation between Moho surface configuration and Earth surface deformation was found.
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鄂霍次克海莫霍面形态的水均衡效应三维模拟接近真实
利用数字模拟方法研究了冰期-间冰期全球海平面变化与地表变形的相互关系。在地表变形过程中,预计变形幅度取决于上层岩石圈厚度的变化。三维建模允许考虑岩石圈层的厚度变化。在这项工作中,通过在接近鄂霍次克海实际水深和莫霍面构型的基础上创建网格,对类似于间冰期的鄂霍次克海海侵下的流体均衡进行了三维建模。采用Elmer软件进行有限元模拟。结果发现了莫霍面形态与地球表面变形的关系。
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来源期刊
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0.00%
发文量
7
审稿时长
12 weeks
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