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Newmark displacement data for low to moderate magnitude events in the Betic Cordillera

机译:纽约标记位移数据在Betic Cordillera中低至中等幅度事件

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摘要

Land-use decisions in relation to seismic-induced landslide hazard are usually made through the preparation of hazard maps. The rigid-block method is probably the most used for this purpose. Under this method, Newmark displacement is computed for each slope unit and this displacement is used as a guide for establishing categories of hazard. At present, most relations used for computing Newmark displacement are established from moderate-to-high magnitude earthquakes (Mw ≥ 6.5). This data article provides Newmark displacements computed from accelerograms recorded in the Betic Cordillera for low-to-moderate magnitude earthquakes (Mw = 3.5–6.3). Records come from the Spanish Strong Ground Motion database (Instituto Geográfico Nacional). Newmark displacements were computed focusing on yield accelerations frequently recorded in such scenarios (0.02, 0.03, 0.04, 0.05, 0.06, 0.08 and 0.10), although higher accelerations were also considered (0.125, 0.15, 0.20, 0.25 and 0.30 g's). These data are useful for the study of the hazard in seismic scenarios of low-to-moderate magnitude, very frequent in practice. These data have been used in the study by Delgado et al. .
机译:与地震诱导的滑坡危害有关的土地使用决策通常是通过制备危险地图进行的。刚性块方法可能是最适用于此目的的方法。在此方法下,为每个斜率单元计算纽马克位移,并且该位移用作建立危险类别的指南。目前,大多数用于计算纽马克位移的关系是从中等到高幅度地震建立的(MW≥6.5)。此数据文章提供从在贝氏线曲线区域中记录的Accelerogram计算的纽马克位移,用于低至中等地震(MW = 3.5-6.3)。记录来自西班牙强大地面运动数据库(InstitutoGeográficonacional)。纽约标记位移的聚焦对常规记录在这种情况下的产量加速度(0.02,0.03,0.04,0.05,0.06,0.08和0.10),尽管也考虑了更高的加速度(0.125,0.15,0.20,0.25和0.30g)。这些数据对于研究低至中等程度的地震场景的危害,非常频繁。这些数据已在Delgado等人的研究中使用。 。

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