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首页> 外文期刊>Autonomic neuroscience: basic & clinical >Estimation of radiated energy using the K K-net downhole records-old method for modern data
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Estimation of radiated energy using the K K-net downhole records-old method for modern data

机译:估计辐射能量使用K-NET井下记录旧方法进行辐射能量

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摘要

We use KiK-net (HIED) downhole records to estimate the radiated energy, E-R, of 29 Japanese inland earthquakes with a magnitude range from M (w)= 5.6 to 7.0. The method is based on the work of Gutenberg and Richter in which the time integral of S-wave ground-motion velocity-squared is measured as a basic metric of the radiated energy. Only stations within a distance of 100 km are used to minimize complex path and attenuation effects. Unlike the teleseismic method that uses mainly P waves, the use of S waves which carry more than 95 per cent of the radiated energy allows us to obtain robust results. We calibrate the method using synthetic seismograms to modernize and improve the Gutenberg-Richter method. We compute synthetic seismograms for a source model of each event with a given source function (i.e. known E-R), the actual mechanism and the source-station geometry. Then, we compare the given E-R with the computed energy metric to correct for the unknown effect of wave propagation and the mechanism. The use of downhole records minimizes the uncertainty resulting from the site response. Our results suggest that the currently available estimates of E-R from teleseismic data are probably within a factor of 3, on average, of the absolute value. The scaled energy e(R) ( = E-R/M-0) is nearly constant at about 3 x 10(-5) over a magnitude range from M-w= 5.6 to 7.0 with a slight increasing trend with M-w. We found no significant difference in e(R) between dip-slip and strike-slip events.
机译:我们使用KIK-NET(HIED)井下记录来估计辐射能量,E-R,29个日本内陆地震的幅度范围从M(w)= 5.6到7.0。该方法基于Gutenberg和Richter的工作,其中S波地运动速度平方的时间整体被测量为辐射能量的基本度量。只有100km的距离内的车站只能最小化复杂的路径和衰减效果。与主要使用P波的Telesmicic方法不同,使用载有超过95%的辐射能量的S波允许我们获得鲁棒的结果。我们使用合成地震图校准方法,以使古腾堡 - 富勒方法现代化和改进。我们使用给定源功能(即已知E-R),实际机制和源站几何来计算每个事件的源模型的合成地震图。然后,我们将给定的E-R与计算的能量指标进行比较,以纠正波传播的未知效果和机制。井下记录的使用最大限度地减少了站点响应所产生的不确定性。我们的研究结果表明,目前可用的E-R从Telesmic数据的估计可能在3倍的绝对值的范围内。缩放的能量E(r)(= e-r / m-0)在大约3×10(-5)上几乎恒定,在M-W = 5.6到7.0的幅度范围内,具有略微增加的M-W趋势。我们发现浸渍滑动和击球事件之间的e(r)没有显着差异。

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