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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >What controls interplate coupling?: Evidence for abrupt change in coupling across a border between two overlying plates in the NE Japan subduction zone
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What controls interplate coupling?: Evidence for abrupt change in coupling across a border between two overlying plates in the NE Japan subduction zone

机译:是什么控制板间耦合?:NE Japan俯冲带中两个上覆板之间的边界耦合突然改变的证据。

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摘要

Interplate coupling in the southernmost extent of the northeast Japan subduction zone (east off-Kanto, Japan) is investigated in detail using a large data set of small repeating earthquakes. In this region of the trench-trench-trench type triple junction, the subducting Pacific plate is in contact with two different overlying plates (the North American and Philippine Sea plates). The border between the two overlying plates extending northwestward from the triple junction is identified along the upper surface of the Pacific plate based on the slip vectors of many interplate events including small repeating earthquakes. The interplate coupling coefficient estimated from the cumulative slip of small repeating earthquakes for the period from 1993 to 2007 reveals a distinct change from south (ca. 0.3) to north (ca. 0.7) across the border. This border also corresponds to the southern limit of the source areas of M>7 interplate earthquakes in the last 80 years along the Japan trench, again indicating the stronger coupling to the north. We also investigate hypocenter distribution and seismic velocity structure along the plate boundary from a large number of travel-time data obtained from the nationwide seismograph network. The results reveal a distinct low-velocity zone just above the Pacific plate and low seismicity along the plate boundary in the region overlain by the Philippine Sea plate, whereas there are no low-velocity zones and the seismicity is high in the region overlain by the North American plate. These observations imply that the geological difference of overlying plate controls large-scale coupling at the plate interface.
机译:使用大量重复小地震的大型数据,详细研究了日本东北俯冲带最南端(日本关东东部)的板间耦合。在海沟—海沟—海沟型三重结的这一区域,俯冲的太平洋板块与两个不同的上覆板块(北美和菲律宾海板块)接触。根据许多板间事件(包括小规模重复地震)的滑动矢量,沿着太平洋板块的上表面确定了从三重交界处向西北延伸的两个上覆板块之间的边界。根据1993年至2007年间小规模重复地震的累积滑动估算的板间耦合系数显示,跨界从南(约0.3)到北(约0.7)有明显变化。该边界也对应于过去80年间日本海沟M> 7板间地震震源区的南部边界,再次表明与北部的耦合较强。我们还根据从全国地震仪网络获得的大量传播时间数据,研究了沿板块边界的震源分布和地震速度结构。结果表明,在菲律宾板块上空的太平洋板块上方有明显的低速带,沿板块边界的地震活动性低,而在菲律宾板块上空没有低速带,地震活动性较高。北美板块。这些观察结果表明,上覆板块的地质差异控制了板块界面的大规模耦合。

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