首页> 外文期刊>Bulletin of the Seismological Society of America >ESTIMATION OF ATTENUATION RELATIONS FOR STRONG-MOTION DATA ALLOWING FOR INDIVIDUAL EARTHQUAKE MAGNITUDE UNCERTAINTIES
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ESTIMATION OF ATTENUATION RELATIONS FOR STRONG-MOTION DATA ALLOWING FOR INDIVIDUAL EARTHQUAKE MAGNITUDE UNCERTAINTIES

机译:个体地震震级不确定性允许的强运动数据衰减关系的估计

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摘要

Standard errors of earthquake magnitudes are routinely calculated and vary appreciably between earthquakes. However, the uncertainties of magnitude determination are usually ignored in regression models of strong ground motion as a function of magnitude and distance from the earthquake source. This practice has the potential to bias estimates of strong ground motion. A method is given for taking account of tile uncertainty of each magnitude determination in fitting such models. It extends previous methods in which the error variance is partitioned into between earthquake and within-earthquake components. It allows for further decomposition of the between-earthquake component into a part attributable to magnitude uncertainties and a part attributable to other causes. The method has been applied to the well-known attenuation data of Joyner and Boore (1981). The M-w determinations in this dataset fall into two subsets with distinctly different levels of precision, namely, those determined directly and those inferred from values of M-L. It is shown that most of the between-earthquake component of variance can be attributed to the relatively low precision of the magnitudes in the latter subset. [References: 12]
机译:通常会计算地震震级的标准误差,并且在两次地震之间会有明显的变化。但是,在强地面运动的回归模型中,震级确定的不确定性通常被忽略,而回归模型是震级和距震源距离的函数。这种做法有可能使对强地面运动的估计产生偏差。给出了一种在拟合此类模型时考虑每个幅度确定的瓦片不确定性的方法。它扩展了以前的方法,其中将误差方差划分为地震分量和地震内分量。它允许将地震之间的分量进一步分解为可归因于幅度不确定性的部分和可归因于其他原因的部分。该方法已应用于Joyner和Boore(1981)的著名衰减数据。该数据集中的M-w测定分为两个子集,其精确度水平明显不同,即直接确定的那些和从M-L值推断的那些。结果表明,大部分地震之间的方差分量可归因于后一个子集中震级的相对较低的精度。 [参考:12]

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