Seismicity parameters of Nepal by cumulative slope point change method

R. Khanal, Radhesh Shrestha, Pawan Chhetri, B. Pradhan
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Abstract

Nepal is one of the most seismically active countries with several seismic sources that are capable of generating moderate to high magnitude earthquakes. In this study, earthquake catalogue was developed by considering six major source zones. The completeness time period was determined by performing sensitivity analysis for various magnitude bin widths and time intervals. The seismicity parameters were computed by the least square method (LSM) and maximum likelihood method (MLM). LSM was based on Gutenberg Richter’s scale relationship, whereas for the maximum likelihood method, it was performed by a new method called cumulative slope point change method (CSPCM). The CSPCM was introduced to account the drawbacks of maximum curvature method (MCM), especially for bulk number of data. Furthermore, paper compares the LSM and the MLM for the calculation of seismicity parameters. The comparison shows that the proposed CSPCM based on MLM is reliable in terms of theoretical and analytical way as compared to LSM and MCM.
尼泊尔地震活动性参数的累积斜率点变化法
尼泊尔是地震最活跃的国家之一,有几个震源,能够产生中到高震级地震。本研究考虑了6个主要震源带,编制了地震目录。通过对不同大小的仓宽和时间间隔进行敏感性分析,确定了完成时间周期。采用最小二乘法(LSM)和最大似然法(MLM)计算地震活动参数。LSM基于Gutenberg Richter尺度关系,而极大似然法则采用了一种新的方法——累积斜率点变化法(CSPCM)。为了解决最大曲率法(MCM)在处理大数据量时存在的缺陷,引入了CSPCM。此外,本文还比较了LSM和MLM在地震活动性参数计算上的差异。结果表明,与LSM和MCM相比,本文提出的基于MLM的CSPCM在理论和分析上都是可靠的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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