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新疆和田小孔径台阵监测能力分析 被引量:3
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作者 周玲 《地震工程学报》 CSCD 北大核心 2017年第A01期113-116,共4页
利用2015年1月1日—6月30日期间和田小孔径台阵记录到的地震活动,用swa软件的线性化反演方法对拾取到的地震信息进行波形分析定位,得出完整的人工地震目录表,并对表格里的信息做数据综合分析。用MSDP分析软件的单纯型定位方法,计算分析... 利用2015年1月1日—6月30日期间和田小孔径台阵记录到的地震活动,用swa软件的线性化反演方法对拾取到的地震信息进行波形分析定位,得出完整的人工地震目录表,并对表格里的信息做数据综合分析。用MSDP分析软件的单纯型定位方法,计算分析新疆台网的地震活动,并和新疆台网在台阵周边200km内这一特定区域所记录的地震信息做对比分析,得出和田小孔径台阵的监测能力。和田台阵地震监测能力下限已达到-2.19级,250km范围内可记录零级以下地震,500km内可记录小于1级地震,800km内可记录小于2级地震。 展开更多
关键词 小孔径台阵 线性化反演方法 对比分析 监测能力
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A Quadratic precision generalized nonlinear global optimization migration velocity inversion method
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作者 Zhao Taiyin Hu Guangmin +1 位作者 He Zhenhua Huang Deji 《Applied Geophysics》 SCIE CSCD 2009年第2期138-149,共12页
An important research topic for prospecting seismology is to provide a fast accurate velocity model from pre-stack depth migration. Aiming at such a problem, we propose a quadratic precision generalized nonlinear glob... An important research topic for prospecting seismology is to provide a fast accurate velocity model from pre-stack depth migration. Aiming at such a problem, we propose a quadratic precision generalized nonlinear global optimization migration velocity inversion. First we discard the assumption that there is a linear relationship between residual depth and residual velocity and propose a velocity model correction equation with quadratic precision which enables the velocity model from each iteration to approach the real model as quickly as possible. Second, we use a generalized nonlinear inversion to get the global optimal velocity perturbation model to all traces. This method can expedite the convergence speed and also can decrease the probability of falling into a local minimum during inversion. The synthetic data and Mamlousi data examples show that our method has a higher precision and needs only a few iterations and consequently enhances the practicability and accuracy of migration velocity analysis (MVA) in complex areas. 展开更多
关键词 Pre-stack depth migration migration velocity analysis generalized nonlinear inversion common imaging gather
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