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Constrained gravity inversion unravels the Moho depth and tectonic patterns in China and its adjacent areas
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作者 ZhiXin Xue DongMei Guo +1 位作者 Jian Fang ronghua cui 《Earth and Planetary Physics》 2025年第4期799-816,共18页
The Mohorovicic discontinuity(Moho)boundary separating the Earth’s crust and mantle reflects the evolutionary trajectory of the Earth’s crust,yielding crucial insights into crustal formation,tectonic evolution,and p... The Mohorovicic discontinuity(Moho)boundary separating the Earth’s crust and mantle reflects the evolutionary trajectory of the Earth’s crust,yielding crucial insights into crustal formation,tectonic evolution,and profound dynamic processes.However,the prevailing Moho models for China and its adjacent areas suffer from limited accuracy,owing to the irregular and sparse distribution of seismic data collection.In this study,we employ gravimetric data to derive Moho depth,and employ Bott’s regularization method,integrating gravity and seismic data to reconstruct the Moho structure with high precision in a three-dimensional framework across China and its adjacent areas.By optimizing gravity potential field separation and interface inversion techniques,we present a detailed and accurate zoning scheme for classifying China and its adjacent areas into 35 gradient belts,6 primary tectonic units,and 35 secondary tectonic units,based on the spatial distribution characteristics of the Moho discontinuity.Notably,our tectonic pattern division results surpass previous studies in terms of resolution,providing a wealth of tectonic information.Leveraging the Moho depth model of China and its adjacent areas,we discuss orogenic belts,sedimentary basins,fault systems,plate boundaries,and land-sea coupled tectonic patterns.We meticulously summarize the Moho depth distribution characteristics of each tectonic unit,while exploring the macrostructural framework and geological significance of the study area.Our findings highlight the close relationship between China and its adjacent areas Moho depth model and deep geodynamics,elucidating the tectonic evolution both between and within tectonic plates,as well as the tectonic effects induced by mantle dynamics.These insights have crucial implications for the study of deep geodynamics in China and its adjacent areas. 展开更多
关键词 inverted Moho depth global geopotential model Bott’s regularization method tectonic division tectonic patterns
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基于水平集法的薄板加强筋分布优化理论研究 被引量:7
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作者 崔荣华 崔天晨 +2 位作者 孙直 张维声 郭旭 《固体力学学报》 CAS CSCD 北大核心 2018年第6期587-593,共7页
基于水平集方法,提出薄板加强筋分布的拓扑优化理论.采用Kirchhoff板单元,通过刚度等效,分别使用不同的抗弯刚度表征薄板与加强筋,继而通过水平集方法描述加强筋的布局并进行加强筋分布拓扑优化.以最小柔顺度为设计目标,进行了几种典型... 基于水平集方法,提出薄板加强筋分布的拓扑优化理论.采用Kirchhoff板单元,通过刚度等效,分别使用不同的抗弯刚度表征薄板与加强筋,继而通过水平集方法描述加强筋的布局并进行加强筋分布拓扑优化.以最小柔顺度为设计目标,进行了几种典型载荷下加筋板结构的加筋分布优化设计,通过与变密度方法(SIMP)结果以及现有文献设计结果进行对比,验证了论文提出的加强筋分布拓扑优化理论.结果显示,论文方法能够避免灰度单元,获得清晰的加强筋优化布局和尺寸. 展开更多
关键词 拓扑优化 加筋板 水平集方法 薄板 等效刚度
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An Optimization Approach for Stiffener Layout of Composite Stiffened Panels Based on Moving Morphable Components(MMCs) 被引量:7
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作者 Zhi Sun ronghua cui +3 位作者 Tianchen cui Chang Liu Shanshan Shi Xu Guo 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2020年第5期650-662,共13页
An explicit topology optimization method for the stiffener layout of composite stiffened panels is proposed based on moving morphable components(MMCs).The skin and stiffeners are considered as panels with different be... An explicit topology optimization method for the stiffener layout of composite stiffened panels is proposed based on moving morphable components(MMCs).The skin and stiffeners are considered as panels with different bending stiffnesses,with the use of equivalent stiffness method.Then the location and geometric properties of composite stiffeners are determined by several MMCs to perform topology optimization,which can greatly simplify the finite element model.With the objective of maximizing structural stiffness,several typical cases with various loading and boundary conditions are selected as numerical examples to demonstrate the proposed method.The numerical examples illustrate that the proposed method can provide clear stiffener layout and explicit geometry information,which is not limited within the framework of parameter and size optimization.The mechanical properties of composite stiffened panels can be fully enhanced. 展开更多
关键词 Topology optimization Composite stiffened panels Stiffener layout Moving morphable components(MMCs)
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Topology optimization of plate structures using plate element-based moving morphable component(MMC)approach 被引量:4
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作者 Tianchen cui Zhi Sun +3 位作者 Chang Liu Linyuan Li ronghua cui Xu Guo 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2020年第2期412-421,共10页
A topology optimization approach for designing the layout of plate structures is proposed in this article.In this approach,structural mechanical behavior is analyzed under the framework of Kirchhoff plate theory,and s... A topology optimization approach for designing the layout of plate structures is proposed in this article.In this approach,structural mechanical behavior is analyzed under the framework of Kirchhoff plate theory,and structural topology is described explicitly by a set of moving morphable components.Compared to the existing treatments where structural topology is generally described in an implicit manner,the adopted explicit geometry/layout description has demonstrated its advantages on several aspects.Firstly,the number of design variables is reduced substantially.Secondly,the obtained optimized designs are pure black-and-white and contain no gray regions.Besides,numerical experiments show that the use of Kirchhoff plate element helps save 95-99%computational time,compared with traditional treatments where solid elements are used for finite element analysis.Moreover the accuracy of the proposed method is also validated through a comparison with the corresponding theoretical solutions.Several numerical examples are also provided to demonstrate the effectiveness of the proposed approach. 展开更多
关键词 Plate structure Topology optimization Moving morphable component(MMC) Kirchhoff plate theory
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