Probabilistic forecast of next earthquake event in Makran subduction zone using Weibull distribution

IF 0.7 Q4 GEOCHEMISTRY & GEOPHYSICS
Adil Rehman, Huai Zhang
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引用次数: 0

Abstract

Earthquake is the most lethal type of natural disaster. Researchers have been working to develop precise earthquake prediction methods to save lives. A statistical investigation is an effective earthquake prediction method because they offer more details about the seismic risk or hazard issue. This study utilizes seismic data from the Makran subduction zone from 1934 to 2017. Probability distributions may be employed to assess the risk of seismic events and earthquake occurrence probability. This work estimates the probability of the next major event in the Makran subduction zone through Weibull distribution by considering strong earthquakes with a magnitude (Mw ≥ 6) in the intervals (in years) between two consecutive earthquakes. The probabilities of the forthcoming seismic event have been estimated based on the previous earthquake record, pictorially. The calculated parameters of the Weibull distribution for the Makran subduction zone may help to forecast the probabilities of a strong earthquake and describe the pattern of earthquake average return time. The calculated probability for the Weibull distribution reaches 0.92 after ten years since the last strong earthquake in 2021, indicating that the Weibull distribution within and around the present research area in 2031 will be 92%.
利用威布尔分布对马克兰俯冲带下一次地震事件进行概率预测
地震是最致命的自然灾害。研究人员一直致力于开发精确的地震预测方法,以拯救生命。统计调查是一种有效的地震预测方法,因为它们能提供有关地震风险或危害问题的更多细节。本研究利用了马克兰俯冲带从 1934 年到 2017 年的地震数据。概率分布可用于评估地震事件风险和地震发生概率。考虑到两次连续地震之间的间隔时间(以年为单位)内发生震级(Mw ≥ 6)的强震,本研究通过 Weibull 分布估算了马克兰俯冲带下一次重大地震事件的概率。根据以往的地震记录,以图形方式估算了即将发生地震的概率。计算出的马克兰俯冲带 Weibull 分布参数可能有助于预测强震概率和描述地震平均重现时间模式。自 2021 年最后一次强震发生后十年,计算得出的 Weibull 分布概率达到 0.92,表明 2031 年本研究区域内及周边地区的 Weibull 分布概率将达到 92%。
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来源期刊
Contributions to Geophysics and Geodesy
Contributions to Geophysics and Geodesy GEOCHEMISTRY & GEOPHYSICS-
CiteScore
1.20
自引率
14.30%
发文量
0
审稿时长
20 weeks
期刊介绍: CGG publishes original research papers, short and rapid communications and review articles covering a wide spectrum of earth science disciplines including deep structural geophysics, geodynamics, tectonics, near surface geophysics, applied and environmental geophysics, geomagnetism, seismology, paleomagnetism, space weather, geodesy and geomatics, surveying engineering, hydrology, hydro-geology, atmospheric science, climatology.
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