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利用潜源区样本空间确定CPSHA模型空间分布函数的方法 被引量:2
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作者 黄伟 叶友清 +4 位作者 史丙新 李大虎 刘玉法 孔军 李建亮 《四川地震》 2016年第1期1-6,共6页
提出了一种利用潜源区样本空间确定空间分布函数的思路—潜源区样本空间法。除潜源区和地震目录外,不需要任何额外的资料,该方法就可以给出4套不同的空间分布函数,还可以提供任意震级间隔的空间分布函数,不存在多因子方法中因子分辨率... 提出了一种利用潜源区样本空间确定空间分布函数的思路—潜源区样本空间法。除潜源区和地震目录外,不需要任何额外的资料,该方法就可以给出4套不同的空间分布函数,还可以提供任意震级间隔的空间分布函数,不存在多因子方法中因子分辨率与计算震级档不协调的问题,更好地体现了潜源区之间地震活动的空间差异,适用于多方案潜源区开展概率地震危险性分析。 展开更多
关键词 空间分布函数 潜源区样本空间 事件体 事件域 潜源区样本空间法
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地震震源机制解在华南及邻区潜源区长轴方向判定中的应用 被引量:6
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作者 郑月军 张世民 +1 位作者 崔效锋 黄忠贤 《中国地震》 CSCD 北大核心 2006年第1期24-33,共10页
本文利用34°N以南,105°E以东大陆东南地区中强地震和小震的震源机制解结果,分析了震源机制解与可能的中强震发震构造及潜源区方向的关系。华南及邻区地震震源机制解节面走向和主应力轴方位分布具有明显的优势方向,大部分M≥4.... 本文利用34°N以南,105°E以东大陆东南地区中强地震和小震的震源机制解结果,分析了震源机制解与可能的中强震发震构造及潜源区方向的关系。华南及邻区地震震源机制解节面走向和主应力轴方位分布具有明显的优势方向,大部分M≥4.0地震震源机制解中一个节面走向与主要构造走向及大多数潜源区方向对应较好,多数小震的节面走向和主应力轴方位综合统计结果也能为潜源区方向的判定提供比较可靠的依据。同时通过对1996年南黄海MS6.1地震和1997年福建龙岩-永安MS5.2地震的震源机制解结果进行分析,并结合区域地质构造、地震活动以及地震的等震线长轴展布、余震分布等资料,探讨了这两个地区潜源区的划分。 展开更多
关键词 地震震源机制解 华南及邻 潜源区方向
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基于潜源区样本空间确定空间分布函数 被引量:4
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作者 叶友清 史丙新 +2 位作者 刘玉法 孔军 李建亮 《地震工程与工程振动》 CSCD 北大核心 2014年第S1期100-107,共8页
本文给出了采用潜源区样本空间确定CPSHA模型的空间分布函数的方法。该方法将潜源区震级上限和给定震级m之差与潜源区面积的乘积定义为该潜源区m级以上地震事件的样本空间,称为事件体;把所有事件体的集合作为地震统计区的样本空间,然后... 本文给出了采用潜源区样本空间确定CPSHA模型的空间分布函数的方法。该方法将潜源区震级上限和给定震级m之差与潜源区面积的乘积定义为该潜源区m级以上地震事件的样本空间,称为事件体;把所有事件体的集合作为地震统计区的样本空间,然后利用任意一个事件体与地震统计区样本空间的比值关系确定空间分布函数。这种利用潜源区样本空间确定空间分布函数的方法不仅可以避免多因子方法的主观性和人为性,而且可以给出任意震级间隔的空间分布函数;其简单的计算过程也有利于在CPSHA方法使用多方案潜源区评估场地的地震危险性。 展开更多
关键词 空间分布函数 潜源区 地震统计 样本空间 事件体
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Focal Mechanism Analysis for Determination of Potential Source Zones in South China and Its Adjacent Regions
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作者 Zheng Yuejun Zhang Shimin Cui Xiaofeng Huang Zhongxian 《Earthquake Research in China》 2006年第4期385-395,共11页
Based on the results of focal mechanism solutions in southeastern areas of China (south of 34°N and east of 105° E), this article analyzes the correlation of focal mechanism solutions with seismogenic stru... Based on the results of focal mechanism solutions in southeastern areas of China (south of 34°N and east of 105° E), this article analyzes the correlation of focal mechanism solutions with seismogenic structures of moderate strong earthquakes and the direction of potential source zones. The data show that the nodal planes of focal mechanism solutions and the principle stresses in southern China are of predominantly similar directions, most of the solutions for M ≥4.0 earthquakes correspond to the main structure directions as well as the directions of potential source zones. The statistical results of multiple small earthquakes concerning nodal planes and main stress axes are also reliable for determining the direction of potential source zones. According to the analysis of focal mechanism solutions, long-axis direction of isoseismals distribution of aftershocks, geologic structures, and seismic activity in two areas of the Ms6.1 earthquake in the south Yellow Sea in 1996 and the MsS.2 earthquake in Fujian in 1997, the potential source zone division is discussed. 展开更多
关键词 Focal mechanism Southern areas of China Direction of potential source zone
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Discussion on the Relationship between “Anti-great Earthquakes” and Ground Motion with a Low Probability of Exceedance
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作者 Chen Kun Gao Mengtan Li Wansheng 《Earthquake Research in China》 2013年第4期440-446,共7页
In this paper we discuss the differences and relationship between"great earthquakes",rare ground motion,and very rare ground motion.Taking the Beichuan-Yingxiu potential seismic source zone in Longmenshan se... In this paper we discuss the differences and relationship between"great earthquakes",rare ground motion,and very rare ground motion.Taking the Beichuan-Yingxiu potential seismic source zone in Longmenshan seismic belt as an example,we revealed the relationship between the effects of"great earthquakes"and rare ground and very rare ground motion.After pointing out scientific and technical problems in the current seismic fortification system,we suggest that very rare ground motion should be considered if we want to deduce the potential hazard of great earthquakes in the future. 展开更多
关键词 Great earthquake Rare ground motion Very rare ground motion Probability of exceedance
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Seismotectonic Zonation of the Longmengshan and Chengdu Region
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作者 Kong Jun Shi Bingxin +1 位作者 Zhou Rongjun Wang Shiyuan 《Earthquake Research in China》 CSCD 2016年第4期566-577,共12页
The principle of three-level delineation is adopted in determination of a potential seismic source for the new National Seismic Ground Motion Parameters Zoning Map of China,to embody the inhomogeneity of the spatial d... The principle of three-level delineation is adopted in determination of a potential seismic source for the new National Seismic Ground Motion Parameters Zoning Map of China,to embody the inhomogeneity of the spatial distribution of background seismic activity and induct a uniform seismotectonic model for each seismotectonic region. Based on achievements of determining potential seismic sources in southwestern China,this paper introduces the basic characteristics, historical earthquakes magnitude and frequency distribution,identification of deformation mechanism of main active tectonic structures for the Longmenshan and Chengdu seismotectonic region in the Longmenshan seismic region,establishes the seismogenic model for each seismotectonic region,and identifies the upper limit of background earthquakes. A simple method is also put forward for calculating the spatial distribution function of a background seismic source. 展开更多
关键词 Potential seismic source Seismotectonic region Spatial distribution function
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Methods for Estimating Mean Annual Rate of Earthquakes in Moderate and Low Seismicity Regions
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作者 Peng Yanju Zhang Lifang Lv Yuejun Xie Zhuojuan 《Earthquake Research in China》 2012年第3期335-347,共13页
Two kinds of methods for determining seismic parameters are presented, that is, the potential seismic source zoning method and grid-spatially smoothing method. The Gaussian smoothing method and the modified Gaussian s... Two kinds of methods for determining seismic parameters are presented, that is, the potential seismic source zoning method and grid-spatially smoothing method. The Gaussian smoothing method and the modified Gaussian smoothing method are described in detail, and a comprehensive analysis of the advantages and disadvantages of these methods is made. Then, we take centrai China as the study region, and use the Gaussian smoothing method and potential seismic source zoning method to build seismic models to calculate the mean annual seismic rate. Seismic hazard is calculated using the probabilistic seismic hazard analysis method to construct the ground motion acceleration zoning maps. The differences between the maps and these models are discussed and the causes are investigated. The results show that the spatial smoothing method is suitable for estimating the seismic hazard over the moderate and low seismicity regions or the hazard caused by background seismicity; while the potential seismic source zoning method is suitable for estimating the seismic hazard in well-defined seismotectonics. Combining the spatial smoothing method and the potential seismic source zoning method with an integrated account of the seismicity and known seismotectonics is a feasible approach to estimate the seismic hazard in moderate and low seismicity regions. 展开更多
关键词 Moderate and low seismicity regions Annual seismic activity rate Grid-spatially smoothing method Potential seismic source zoning method
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