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HYPOSAT – An Enhanced Routine to Locate Seismic Events

机译:HYPOSAT –定位地震事件的增强例程

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— A program package, called HYPOSAT, has been under development that attempts to use the maximum information possible to estimate the hypocenter of a seismic source. The standard input parameters can be used: arrival times of first and later onsets with backazimuths and ray parameters (or apparent velocities). In addition, travel-time differences between different phases observed at the same station can be optionally used. The observed standard deviations are used to weight all input parameters and the inversion is done with a generalized matrix inversion code.¶A starting solution with a priori uncertainties can be calculated as the intersection of all backazimuth observations. If S observations are also available, a preliminary origin time is estimated using Wadati's approach to estimate a source time.¶Global earth models and user-defined horizontally layered local or regional models can be used alone or together to locate seismic events. To gain the best result from all input data, observations of all seismic phases as defined in the IASPEI91 tables can be inverted. Station corrections and corrections for phases with reflection points at the earth's surface can be applied by using local velocity structures.
机译:—正在开发一个名为HYPOSAT的程序包,该程序包试图使用可能的最大信息来估计地震源的震源。可以使用标准输入参数:带有后方位角和射线参数(或视在速度)的初次和以后发作的到达时间。此外,可以选择使用在同一站点观测到的不同相位之间的传播时间差。观测到的标准差用于加权所有输入参数,并使用广义矩阵求逆代码进行求逆。¶可以将具有先验不确定性的起始解作为所有反方位角观测值的交点来计算。如果也有S观测值,则可以使用Wadati的方法来估计原始时间,以估计震源时间。可以单独使用全球地球模型和用户定义的水平分层局部或区域模型来定位地震事件。为了从所有输入数据中获得最佳结果,可以反转IASPEI91表中定义的所有地震相位的观测值。可以通过使用局部速度结构来应用站校正和对地球表面反射点的相位进行校正。

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