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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Fluid pressure and temperature transients detected at the Nankai Trough Megasplay Fault: Results from the SmartPlug borehole observatory
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Fluid pressure and temperature transients detected at the Nankai Trough Megasplay Fault: Results from the SmartPlug borehole observatory

机译:在南开海槽Megasplay故障处检测到的流体压力和温度瞬变:SmartPlug钻孔观测站的结果

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摘要

The SmartPlug is the first borehole observatory in the IODP Nankai Trough Seismogenic Zone Experiment (NanTroSEIZE). It comprises a retrievable bridge plug with an autonomous instrument for pressure (P) and temperature (T) monitoring. The borehole observatory was installed at Site C0010 of the Integrated Ocean Drilling Program (IODP) Kumano transect crossing the Nankai Trough, SE offshore Japan, to obtain fluid pressure and temperature data from where the borehole penetrates one of the shallow branches of the subduction megasplay fault at 410 mbsf. In this manuscript, a 15. month-long P-T record collected by the SmartPlug is evaluated. Despite the 1. min sampling interval, pressure variations related to local storms and to tsunami and seismic waves from regional and distant earthquakes are observed. Seismic waves of one regional earthquake appear to have led to a drop in formation pressure that may be the consequence of a seismic-wave-induced increase in permeability. Pressure variations related to Rayleigh waves are typically larger in the formation than in the inadvertently sealed casing above, whereas seafloor loading signals imposed by tides, tsunamis, and storm-generated waves are larger in the casing than in the formation. This difference presumably reflects the different response to strain generated by formation deformation vs. strain caused by loading at the seafloor. No seismogenic or aseismic deformation event at the megasplay fault or within the accretionary prism was observed during this initial 15-month-long recording period.
机译:SmartPlug是IODP南开海槽地震发生区实验(NanTroSEIZE)中的第一个钻孔观测站。它包括一个可收回的桥塞和一个用于监测压力(P)和温度(T)的独立仪器。钻孔天文台安装在穿越日本东南海南海海槽的综合海洋钻探计划(IODP)熊野样带的C0010站点上,以获取流体压力和温度数据,钻孔可从该处穿透俯冲兆发断层的浅分支之一410 mbsf。在此手稿中,对SmartPlug收集的长达15个月的P-T记录进行了评估。尽管采样间隔为1.分钟,但仍观察到与局部风暴以及与区域和远处地震产生的海啸和地震波有关的压力变化。一场区域性地震的地震波似乎导致地层压力下降,这可能是地震波引起的渗透率增加的结果。与瑞利波有关的压力变化通常在地层中要比在上面无意密封的套管中大,而由潮汐,海啸和风暴产生的波施加的海底载荷信号在套管中要比地层大。该差异大概反映了对由地层变形产生的应变与由海底载荷引起的应变的不同响应。在此最初的15个月的记录期内,没有观察到兆张断层或增生棱镜内的地震或地震变形事件。

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