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Imaging of 3-D Seismic Velocity Structure of Southern Sumatra Region Using Double Difference Tomographic Method

机译:双差分断层法测定南部苏门答腊地区三维地震速度结构的成像

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Southern Sumatra region has a high level of seismicity due to the influence of the subduction system, Sumatra fault, Mentawai fault and stretching zone activities. The seismic activities of Southern Sumatra region are recorded by Meteorological Climatological and Geophysical Agency (MCGA's) Seismograph network. In this study, we used earthquake data catalog compiled by MCGA for 3013 events from 10 seismic stations around Southern Sumatra region for time periods of April 2009 - April 2014 in order to invert for the 3-D seismic velocities structure (Vp, Vs, and Vp/Vs ratio). We applied double-difference seismic tomography method (tomoDD) to determine Vp, Vs and Vp/Vs ratio with hypocenter adjustment. For the inversion procedure, we started from the initial 1-D seismic velocity model of AK135 and constant Vp/Vs of 1.73. The synthetic travel time from source to receiver was calculated using ray pseudo-bending technique, while the main tomographic inversion was applied using LSQR method. The resolution model was evaluated using checkerboard test and Derivative Weigh Sum (DWS). Our preliminary results show low Vp and Vs anomalies region along Bukit Barisan which is may be associated with weak zone of Sumatran fault and migration of partial melted material. Low velocity anomalies at 30-50 km depth in the fore arc region may indicated the hydrous material circulation because the slab dehydration. We detected low seismic seismicity in the fore arc region that may be indicated as seismic gap. It is coincides contact zone of high and low velocity anomalies. And two large earthquakes (Jambi and Mentawai) also occurred at the contact of contrast velocity.
机译:由于俯冲系统,苏门答腊故障,介绍故障和伸展区活动,南苏门答腊地区具有高水平的地震性。南部苏门答腊地区的地震活动由气象气候和地球物理学机构(MCGA)地震仪网络记录。在这项研究中,我们使用了MCGA编组的地震数据目录,从南苏门答腊地区南部苏门答腊地区的10个地震站举办了3013个事件,以便2014年4月至2014年4月,以逆变为3-D地震速度结构(VP,VS和vp / vs比率)。我们应用了双差异地震断层扫描方法(Tomodd)以确定VP,VS和VP / VS比率与斜视调整。对于反转过程,我们从AK135的初始1-D地震速度模型开始,恒定的VP / Vs为1.73。使用射线伪弯曲技术计算来自源到接收器的合成行程时间,同时使用LSQR方法施加主要断层倒置。使用棋盘测试和衍生称量(DWS)评估分辨率模型。我们的初步结果显示沿Barisan的低VP和VS异常区域,这可能与Sumatran故障和部分熔化材料的迁移有关。前弧区域30-50 km深度的低速异常可能表示含水材料循环,因为板坯脱水。我们在前弧区域中检测到低的地震地震性,其可以被指示为地震间隙。它是重合高速度异常的接触区域。而两个大地震(jambi和介绍)也发生了对比度速度的接触。

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