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Validation of Attenuation Models for Ground Motion Applications in Central and Eastern North America

机译:北美中部和东部地震动应用的衰减模型的验证

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摘要

Recently developed attenuation models are incorporated into standard one-dimensional (1-D) ground motion prediction equations (GMPEs), effectively making them two-dimensional (2-D) and eliminating the need to create different GMPEs for an increasing number of sub-regions. The model is tested against a data set of over 10,000 recordings from 81 earthquakes in North America. The use of attenuation models in GMPEs improves our ability to fit observed ground motions and should be incorporated into future national hazard maps. The improvement is most significant at higher frequencies and longer distances which have a greater number of wave cycles. This has implications for the rare high-magnitude earthquakes, which produce potentially damaging ground motions over wide areas, and drive the seismic hazards. Because the attenuation models can be created using weak ground motions, they could be developed for regions of low seismicity where empirical recordings of ground motions are uncommon and do not span the full range of magnitudes and distances.
机译:最新开发的衰减模型已被纳入标准的一维(1-D)地面运动预测方程(GMPE)中,从而有效地使其成为二维(2-D),并且无需为越来越多的子实体创建不同的GMPE。地区。该模型针对北美81次地震的10,000多个记录数据集进行了测试。在GMPE中使用衰减模型可提高我们拟合观测到的地面运动的能力,应将其纳入未来的国家灾害地图。这种改进在频率更高,距离更长,波周期数量更多的情况下最为显着。这对罕见的高强度地震有影响,该地震会在大范围内产生潜在的破坏性地震动,并引发地震危险。由于可以使用弱地面运动来创建衰减模型,因此可以针对地震活动经验记录不常见且未涵盖幅度和距离的整个范围的低地震活动性区域开发衰减模型。

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  • 来源
    《Earthquake spectra》 |2015年第4期|2281-2300|共20页
  • 作者

    Pasyanos Michael;

  • 作者单位

    Lawrence Livermore Natl Lab, Livermore, CA 94550 USA;

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  • 原文格式 PDF
  • 正文语种 eng
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