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Coda wave attenuation characteristics for Kumaon and Garhwal Himalaya, India

机译:印度Kumaon和Garhwal喜马拉雅山的尾波衰减特性

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摘要

Uttarakhand Himalayas are among one of the most seismically active continental regions of the world. The Himalayan belt in this region is divided into Kumaon and Garhwal Himalaya. The Kumaon Himalayas has not experienced any large earthquake in the recent past; however, this region is frequently visited by small-magnitude earthquakes. The objective of this paper was to determine regional attenuation characteristics from data recorded by local strong motion networks operating in these two regions, using coda waves. Coda wave quality factor estimates for the Kumaon and the Garhwal Himalaya region have been made in high-frequency range using single backscattering model given by Aki and Chouet (J Geophys Res 80: 3322-3342, 1975). Coda waves of 30-s window length, filtered at six different frequency bands, centered at 1.5, 3.0, 6.0, 12.0, 20.0 and 28.0 Hz, have been analyzed using the single backscattering method. The frequency-dependent Q(c)(f) relationship for the Kumaon and Garhwal Himalaya was obtained as Q(c) = (65 +/- 2.4)f((1.07+.04)) and Q(c) = (96 +/- 6.9)f((1.06+.04)), respectively, which indicate a higher attenuating medium in the Kumaon Himalaya as compared to Garhwal Himalaya. The obtained difference of attenuation characteristics in this region is further compared with the rate of decay of peak ground acceleration with respect to magnitude and distance parameters by using regression model of peak ground acceleration obtained from available strong motion data in this region. Present studies clearly indicate that there is good evidence for high rate of attenuation in the Kumaon Himalaya as compared to the Garhwal Himalaya.
机译:北阿坎德邦喜马拉雅山脉是世界上地震活跃度最高的大陆地区之一。该地区的喜马拉雅带分为库马翁和加尔瓦尔·喜马拉雅山。最近,库马喜马拉雅山没有发生过任何大地震;但是,该地区经常发生小震。本文的目的是通过使用尾波在这两个区域中运行的本地强运动网络记录的数据确定区域衰减特性。已使用Aki和Chouet给出的单个反向散射模型在高频范围内估算了Kumaon和Garhwal喜马拉雅地区的尾波质量因子(J Geophys Res 80:3322-3342,1975)。使用单个反向散射方法分析了在六个不同的频带上以1.5、3.0、6.0、12.0、20.0和28.0 Hz为中心滤波的30秒窗长的尾波。 Kumaon和Garhwal喜马拉雅山的频率相关Q(c)(f)关系为Q(c)=(65 +/- 2.4)f((1.07 + .04))和Q(c)=(96 +/- 6.9)f((1.06 + .04)),分别表示与Garhwal喜马拉雅山相比,Kumaon喜马拉雅山的衰减介质更高。通过使用从该区域中可用的强运动数据获得的峰值地面加速度的回归模型,将在该区域中获得的衰减特性差异与峰值地面加速度相对于幅度和距离参数的衰减率进行比较。目前的研究清楚地表明,与Garhwal喜马拉雅山相比,Kumaon喜马拉雅山有很高的衰减率。

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