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Global Positioning System (GPS) and GPS-Acoustic Observations: Insight into Slip Along the Subduction Zones Around Japan

机译:全球定位系统(GPS)和GPS声学观测:洞悉日本俯冲带的滑动

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摘要

The global positioning system (GPS) is one of the most powerful tools available for observation of Earth's surface deformation. In particular, coseismic, postseismic, slow transient, and interseismic deformation have all been observed globally by GPS over the past two decades, especially in subduction zones. Moreover, GPS-acoustic techniques have been developed for practical use in the past decade, allowing observation of offshore deformation immediately above slip regions. Here, we describe the application of GPS and GPS-acoustic observations to the detection of deformation due to plate boundary slip for interplate earthquakes as well as afterslip and slow slip events in subduction zones around Japan, where geodetic data coverage is particularly dense.The data demonstrate temporally variable strain accumulation in the source region of the 2011 Mw 9.0 Tohoku-oki earthquake, and observation of the huge slip of the Tohoku-oki earthquake near the trench using GPS-acoustic methods has considerably advanced our knowledge of stress release and accumulation in this subduction zone.
机译:全球定位系统(GPS)是可用于观测地球表面变形的最强大工具之一。尤其是在过去的20年中,GPS已在全球范围内观测到了同震,后震,缓慢的瞬变和震间变形,尤其是在俯冲带。此外,在过去的十年中已经开发出GPS声学技术用于实际应用,可以观察到滑移区域上方的海上变形。在此,我们描述了GPS和GPS声学观测在检测板块间地震引起的板块边界滑移以及日本周围俯冲带中的后滑和慢滑事件引起的变形中的应用,这些地区的大地测量数据覆盖范围特别密集。证明了2011年东北9.0 MW东北地震的震源区随时间变化的应变累积,并且使用GPS声波法对东北oki地震在沟附近的巨大滑移的观测大大提高了我们在地震中应力释放和累积的知识这个俯冲带

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