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首页> 外文期刊>Journal of Asian earth sciences >Frequency dependent attenuation characteristics of coda waves in the Northwestern Himalayan (India) region
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Frequency dependent attenuation characteristics of coda waves in the Northwestern Himalayan (India) region

机译:喜马拉雅西北部(印度)地区尾波对频率的衰减特性

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摘要

Digital seismogram data of 82 earthquakes from the Northwestern Himalayan (India) region recorded at different stations during 2004-2006 were analyzed to study the seismic coda wave attenuation characteristics in this region. We used 132 seismic observations from local earthquakes with a hypocentral distance <240 km and a magnitude range of 1.2-4.9 to study the coda Q(c) using the single isotropic scattering model. These earthquakes were recorded at 20 temporary seismic stations installed in the Northwestern Himalayas (India) by the Wadia institute of Himalayan Geology, Dehradun. The Q(c) values were estimated at 10 central frequencies: 1.5, 3, 5, 7, 9, 12, 16, 20, 24, and 28 Hz using starting lapse -times of 10, 20, 30, 40, 50, and 60 s and coda window-lengths of 10, 20, 30, 40, and 50 s. The Q(c) fits the frequency dependent power-law, Q(c) = Q(0)f(n) For a 10 s lapse time with a 10-s coda window length Q(c) = 47.42f(1.012) and for a 50 s lapse time with a 50 s coda window length, Q(c) = 204.1f(0.934.) Q(0) (Q(c) at 1 Hz) varied from similar to 47 for a 10 s lapse time and a 10 s window length, to similar to 204 for a 50 s lapse time and a 50 s window length. An average frequency dependent power law fit for the study region may be given as Q(c) = 116.716f(0.9943). The exponent of the frequency dependence lawn ranged from 1.08 to 0.9, which correlates well with values obtained in other seismically and tectonically active and heterogeneous regions of the world. In our study region, Q(c) increases both with respect to lapse time and frequency, i.e., the attenuation decreases as the quality factor is inversely proportional to attenuation. The low Q(c) values or high attenuation at lower frequencies and high Q(c) values or low attenuation at higher frequencies suggest that the heterogeneity decreases with increasing depth in our study region. (C) 2015 Elsevier Ltd. All rights reserved.
机译:分析了印度西北喜马拉雅地区(2004-2006年)记录的82次地震的数字地震图数据,以研究该地区的地震尾波衰减特征。我们使用来自震中距<240 km,震级范围为1.2-4.9的本地地震的132个地震观测值,使用单向同性散射模型研究了尾波Q(c)。这些地震是由Dehradun的喜马拉雅地质学家瓦迪亚研究所在喜马拉雅西北部(印度)安装的20个临时地震台站记录的。 Q(c)值是使用10、20、30、40、50,和60秒,尾巴窗口长度分别为10、20、30、40和50秒。 Q(c)符合频率相关的幂律,Q(c)= Q(0)f(n)经过10 s时间后,其尾波窗口长度为10-s Q(c)= 47.42f(1.012)对于50 s的尾部窗口长度的50 s的经过时间,Q(c)= 204.1f(0.934。)Q(0)(1 Hz的Q(c))在10 s的经过时间内从类似于47窗口长度为10 s,类似于204的经过时间为50 s,窗口长度为50 s。适合研究区域的平均频率相关的幂定律可以给出为Q(c)= 116.716f(0.9943)。频率依赖性草坪的指数介于1.08到0.9之间,与世界上其他地震活动和构造活动和异质性地区获得的值高度相关。在我们的研究区域中,Q(c)随时间和频率的增加而增加,即随着品质因数与衰减成反比,衰减减小。低Q(c)值或较低频率下的高衰减,高Q(c)值或较高频率下的低衰减表明,在我们研究的区域中,异质性随深度的增加而减小。 (C)2015 Elsevier Ltd.保留所有权利。

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