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Measuring the Qatar-Kazeron Fault Dip Using Random Finite Fault Simulation of September 27, 2010 Kazeron Earthquake and Analytical Signal Map of Satellite Magnetic Data 被引量:1
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作者 Soraya Dana Mahmood Almasian +2 位作者 Abdolmajid Asadi Mohsen Pourkermani Manouchehr Goreshi 《Open Journal of Geology》 2015年第2期73-82,共10页
In this research the fault parameters causing the September 27, 2010 Kazeron Earthquake with a magnitude of MW = 5.8 (BHRC) were determined using the random finite fault method. The parameters were recorded by 27 acce... In this research the fault parameters causing the September 27, 2010 Kazeron Earthquake with a magnitude of MW = 5.8 (BHRC) were determined using the random finite fault method. The parameters were recorded by 27 accelerometer stations. Simulation of strong ground motion is very useful for areas about which little information and data are available. Considering the distribution of earthquake records and the existing relationships, for the fault plane causing the September 27, 2010 Kazeron Earthquake the length of the fault along the strike direction and the width of the fault along the dip direction were determined to be 10 km and 7 km, respectively. Moreover, 10 elements were assumed along the length and 7 were assumed along the width of the plane. Research results indicated that the epicenter of the earthquake had a geographic coordination of 29.88N - 51.77E, which complied with the results reported by the Institute of Geophysics Tehran University (IGTU). In addition, the strike and dip measured for the fault causing the Kazeron Earthquake were 27 and 50 degrees, respectively. Therefore, the causing fault was almost parallel to and coincident with the fault. There are magnetic discontinuities on the analytical signal map with a north-south strike followed by a northwest-southeast strike. The discontinuities are consistent with the trend of Kazeron fault but are several kilometers away from it. Therefore, they show the fault depth at a distance of 12 km from the fault surface. 展开更多
关键词 Kazeron EARTHQUAKE ANALYTICAL SIGNAL MAP random finite fault method EARTHQUAKE Simulation
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汶川县水磨镇地震动场模拟 被引量:1
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作者 张皓 江华伟 +1 位作者 李宏男 孙威 《沈阳建筑大学学报(自然科学版)》 CAS CSCD 北大核心 2022年第3期461-468,共8页
目的笔者以四川省汶川县水磨镇作为区域研究对象进行村镇区域地震动场模拟,为村镇区域的防震减灾提供理论依据。方法采用随机有限断层法与概率法得到地震动加速度反应谱;并基于弹性波动理论方法,通过该区域各点的地震动平动分量推演得... 目的笔者以四川省汶川县水磨镇作为区域研究对象进行村镇区域地震动场模拟,为村镇区域的防震减灾提供理论依据。方法采用随机有限断层法与概率法得到地震动加速度反应谱;并基于弹性波动理论方法,通过该区域各点的地震动平动分量推演得到地震动扭转分量,建立基于地震动扭转分量的地震动场模型。结果通过地震危险性分析得到了该地区50年超越概率63%的地震烈度为6.3度,PGA=60cm/s^(2);超越概率10%的地震烈度为8.0度,PGA=205cm/s^(2);超越概率2%的地震烈度为9.1度,PGA=361cm/s^(2);超越概率0.5%的地震烈度为9.7度,PGA=593cm/s^(2)。结论通过对比基于地震动平动分量和扭转分量的地震动场模型可以看出,地震动扭转分量的影响不容忽视,在预测村镇区域地震风险及村镇建筑抗震设计及分析时应考虑地震动平动分量和扭转分量的综合影响。 展开更多
关键词 村镇区域 平动分量 扭转分量 随机有限断层法 地震动场
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