An updated earthquake catalog for Bangladesh: an attempt at a seismic risk evaluation

IF 0.4 Q4 ENVIRONMENTAL SCIENCES Geology, Geophysics and Environment Pub Date : 2023-02-20 DOI:10.7494/geol.2023.49.1.37
Md Abdullah Salman, Md Saleh Shakeel Nomaan, Ayon Saha
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Abstract

A unique, consistent, and uniform earthquake catalog is crucial for assessing seismic hazards in any locality. This study aims at compiling and processing a better uniform earthquake catalog, using this catalog to identify the probable subduction zone, and assessing seismicity parameters for Bangladesh. The study area is bounded by the geographical limits 16–29°N and 86–96°E. It includes a sum of 48,342 events which are compiled as 1.0 to 8.5 magnitudes (MW) and time period from 1548 to 2020 yrs. Uniformization is made between the body, surface wave, and moment magnitude scales to unify the catalog in terms of MW. For seismic hazard assessment or prediction studies, this catalog comprises earthquake events from Bangladesh and adjoining regions. The assessed MC obtained is around 4.0–5.0, which leads to a, b value varying between 0.71–1.12 and an a value varying between 4.85–7.12. The findings show that the MC is lower at the border of the Chittagong-Sylhet through Hill tracts than the northern part of the area with an MC 4.5–5.0 and a, b value close to 1.00. The results indicate that the study area is a seismically highly active zone in the context of seismicity parameters. Finally, the compiled catalog, seismicity of the area and a probable deformation front are presented and are recommended for use in assessing seismic hazard analysis in Bangladesh.
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更新的孟加拉国地震目录:地震风险评估的尝试
一个独特的、一致的、统一的地震目录对于评估任何地方的地震危险性都是至关重要的。本研究旨在编制和处理一个更好的统一地震目录,利用该目录确定可能的俯冲带,并评估孟加拉国的地震活动性参数。研究区地理界限为北纬16-29°,东经86-96°。它包括48,342个地震事件,汇编为1.0至8.5级(MW),时间跨度从1548年到2020年。在体、面波和矩震级之间进行了统一,以毫瓦为单位统一目录。为进行地震灾害评估或预测研究,本目录包括孟加拉国及其邻近地区的地震事件。得到的评估MC在4.0-5.0左右,a、b值在0.71-1.12之间,a值在4.85-7.12之间。结果表明:吉大港—锡尔赫特—山地边界的MC值较北部低,MC值为4.5 ~ 5.0,a、b值接近1.00;结果表明,从地震活动性参数上看,研究区属于地震高活跃带。最后,提出了编制的目录、该地区的地震活动性和可能的变形前沿,并建议用于评估孟加拉国的地震危害分析。
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