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2D numerical simulations of earthquake ground motion: examples from the Marche Region, Italy

机译:地震地震动的二维数值模拟:来自意大利马尔凯地区的例子

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摘要

A detailed numerical simulation of the ground motion and a site response analysis for two towns in the Marche Region (Treia and Cagli) is carried out on the basis of structural models deduced from available geological and geophysical data. In both cases, the reference event is an M = 5.7 earthquake associated with a normal fault located beneath each town. The ground motion is computed using the 2D spectral element method (SPEM 2D). The method solves the propagation of the seismic field through complex geological structures and enables an estimate of the effects of deep crustal structure, superficial geology, and topography on ground motion. Numerical simulations of the seismic field are performed along 2D vertical planes containing the seismic source. Strong ground motion has not been yet recorded in the two towns; therefore, the numerical simulation of ground motion represents a way to overcome the lack of instrumental data. The simulations carried out for Treia show that ground motion is influenced by both source mechanism and effects due to propagation through the geological structure, while ground motion in Cagli features strong local effects, caused by the presence of alluvial deposits under a large area of the town.
机译:在根据可用的地质和地球物理数据推导的结构模型的基础上,对马尔凯地区的两个镇(特雷亚和卡利)进行了详细的地面运动数值模拟和场地响应分析。在这两种情况下,参考事件都是与每个城镇下方的正常断层有关的M = 5.7地震。地面运动是使用2D频谱元素方法(SPEM 2D)计算的。该方法解决了通过复杂地质结构传播地震场的问题,并能够估算深壳结构,浅层地质和地形对地面运动的影响。沿着包含地震源的2D垂直平面执行地震场的数值模拟。这两个镇尚未记录到强烈的地面运动。因此,地面运动的数值模拟代表了一种克服仪器数据不足的方法。对Treia进行的模拟表明,地震动受源机制和地质结构传播的影响,而卡利的地震动具有强烈的局部影响,这是由于该镇大面积下存在冲积物引起的。

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