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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 >Tracing geologically constrained fluid flow pathways using a combination of heat flow measurements, pore water chemistry, and acoustic imaging near the deformation front of the Nankai Trough off the Muroto Peninsula, Japan
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Tracing geologically constrained fluid flow pathways using a combination of heat flow measurements, pore water chemistry, and acoustic imaging near the deformation front of the Nankai Trough off the Muroto Peninsula, Japan

机译:结合热流测量,孔隙水化学和声成像技术,在日本室户半岛南海海槽变形前沿附近追踪受地质约束的流体流动路径

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摘要

Visual and acoustic surveys, heat flow measurements, and the analysis of pore water chemistry near the deformation front of the Nankai Trough accretionary prism off theMuroto Peninsula, Japan, show that fluid discharge is constrained by geological structures such as landslides. High heat-flow anomalies (up to 260 mWm~(?2)) exist near the base of a ca. 1.5 km ridge–trough structure, where the exit point of the secondary frontal thrust is thought to occur, but no other anomalies were detected. In contrast, on a 50-m-wide flat area on the steep slope inside the slope-scale landslide structure, where geological strata are exposed, high heat-flow anomalies of around 190 mW m~(?2) exist, accompanied by biological activity and methane-rich pore water. A sub-bottom profiler recorded strata cutting through the seafloor, which also supports the existence of a landslide. Based on these results, we propose a qualitative picture of fluid flow that may explain the observed heat-flow anomalies. Upward fluid flow through the frontal thrust, fluid flow cutting through geological strata, is inhibited near the foot of the slope,while fluid discharge occurswhere the landslide exposes newsurfaces as a result of geologically constrained fluid flow along strata.
机译:视觉和声学调查,热流测量以及对日本Muroto半岛南海海槽增生棱镜形变前沿附近孔隙水化学分析的结果表明,流体的排放受到诸如滑坡等地质结构的限制。在ca的底部附近存在高热流异常(高达260 mWm〜(?2))。 1.5 km的脊槽结构,认为是次要正面推力的出口,但没有发现其他异常。相比之下,在斜坡尺度滑坡结构内部陡峭斜坡上的一个50m宽的平坦区域中,地质层裸露在外,存在约190 mW m〜(?2)的高热流异常,并伴有生物活性和富含甲烷的孔隙水。子底部剖面仪记录了穿过海底的地层,这也支持滑坡的存在。基于这些结果,我们提出了流体流动的定性图,可以解释观察到的热流异常。在斜坡的脚部附近,通过前推力的向上流体流动,穿过地质地层的流体流动受到抑制,而由于沿地层受到地质约束的流体流动,则发生了滑坡暴露新表面的流体排放。

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