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Inversion of Venus internal structure based on geodetic data 被引量:2
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作者 Chi Xiao Fei Li +4 位作者 Jian-Guo Yan Wei-Feng Hao Yuji Harada Mao Ye Jean-Pierre Barriot 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2020年第8期237-251,共15页
Understanding the internal structure of Venus promotes the exploration of the evolutionary history of this planet.However,the existing research concerning the internal structure of Venus has not used any inversion met... Understanding the internal structure of Venus promotes the exploration of the evolutionary history of this planet.However,the existing research concerning the internal structure of Venus has not used any inversion methods.In this work we employed an inversion method to determine the internal structure of Venus using observational or hypothetical geodetic data;these data include mass,mean radius,mean moment of inertia and second degree tidal Love number k2.To determine the core state of Venus,we created two models of Venus,an isotropic 3-layer model with entire liquid core and an isotropic 4-layer model with liquid outer core and a solid inner core,assuming that the interior of Venus is spherically symmetric and in hydrostatic equilibrium.A series of the sensitivity analysis of interior structure parameters to the geodetic data considered in here shows that not all of the parameters can be constrained by the geodetic data from Venus.On this basis,a Markov Chain Monte Carlo algorithm was used to determine the posterior probability distribution and the optimal values of the internal structure parameters of Venus with the geodetic data.We found that the 3-layer model is more credible than the 4-layer model via currently geodetic data.For the assumption of the 3-layer model with the k2=0.295±0.066,I/MR^2=0.33±0.0165,andρ=5242.7±2.6 kg m^-3,the liquid iron-rich core of Venus has a radius of 3294+215-261km,which suggests a larger core than previous research has indicated.The average density of the mantle and liquid core of Venus are 4101+325-375and 11885+955-1242kg m~^-3,respectively. 展开更多
关键词 planets and satellites:interiors planets and satellites:terrestrial planets planets and satellites:physical evolution planets and satellites:fundamental parameters
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确定断裂带内部结构和物性参数的一种方法 被引量:13
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作者 樊计昌 刘明军 《石油地球物理勘探》 EI CSCD 北大核心 2007年第2期164-169,共6页
上地壳的深大断裂在地下深处常常伴有几百米至几千米宽的低速带,它对油气的储集和运移或对储层的破环起着重要的控制作用。了解其三维形态、规模、倾向及物性参数(如波速和Q值等),对指导油气勘探有重要作用。断层带围陷波方法是精确确... 上地壳的深大断裂在地下深处常常伴有几百米至几千米宽的低速带,它对油气的储集和运移或对储层的破环起着重要的控制作用。了解其三维形态、规模、倾向及物性参数(如波速和Q值等),对指导油气勘探有重要作用。断层带围陷波方法是精确确定断层几何形态和物性参数的一种有效方法。本文给出了确定断裂带内部物性参数的计算公式和步骤,开发了一套综合利用断层带围陷波和体波(P波和S波)确定断层几何形态和物性参数的软件,还给出了围陷波分析和计算的应用实例。研究及应用结果表明:通过谱分析方法,利用断层带围陷波能够初步确定断层的结构、随深度的延续特征及物性参数;借助于围陷波和体波的走时及波形资料,利用谱分析和射线追踪方法可进一步确定断层的三维几何形态和物性参数。 展开更多
关键词 断层带围陷波 断裂带内部结构 谱分析 物性参数 射线追踪 人机交互软件
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地球内部扁率及其它物理参数的计算 被引量:2
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作者 郭俊义 黄金水 张飞鹏 《武汉测绘科技大学学报》 CSCD 1996年第2期109-114,共6页
计算了地球内部任意半径处与密度分布相关的物理参数,如扁率、质量、重力、压强、平均主惯量、主惯量之差等,对应于初步参考地球模型(PREM)多项式及离散数字形式的密度模型给出了上述参数的多项式及离散数字模型。
关键词 地球内部的物理参数 常微分方程 切贝谢夫配点法
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