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A synthesis of heat flow determinations and thermal modeling along the Nankai Trough, Japan

机译:日本南海海槽热流测定和热模拟的综合

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摘要

We review marine heat flow data along the Nankai Trough and show that observations >30 km seaward of the deformation front are 20% below conductive predictions (129-94 mW m~(-2)) but consistent with the global heat flow average for oceanic crust of the same age (16-28 Ma). Heat flow values ≤30 km seaward of the deformation front are generally 20% higher than conductive predictions. This heat flow pattern is consistent with the advection of heat by fluid flow in the subducting oceanic crust and explains both the high heat flux in the vicinity of the trench, >200 and >140 mW m~(-2), and steep landward declines to values of approximately 60 mW m~(-2) over distances of 65 and 50 km along the Muroto and Kumano transects, respectively. Along the Ashizuri transect, the lack of heat flow data precludes a definitive interpretation. We conclude that fluid flow in the subducting oceanic crust leads to temperatures that are generally 25°C higher near the toe of the margin wedge and 50-100°C lower near the downdip limit of the seismogenic zone than estimated by purely conductive models.
机译:我们回顾了南海海槽的海洋热流数据,发现> 30 km的变形锋向海的观测值比传导性预测值(129-94 mW m〜(-2))低20%,但与全球海洋热流平均值一致相同年龄(16-28 Ma)的地壳。变形前沿向海的≤30 km的热流值通常比传导性预测高20%。这种热流模式与俯冲洋壳中流体流对流的热流一致,并解释了沟渠附近的高热通量,> 200和> 140 mW m〜(-2),以及陡峭的陆上下降在Muroto和Kumano断面的65 km和50 km的距离上分别达到约60 mW m〜(-2)的值。沿着Ashizuri样带,缺乏热流数据排除了明确的解释。我们得出的结论是,俯冲洋壳中的流体流动导致边缘楔形脚趾附近的温度通常比纯传导模型所估计的温度高25°C,而在地震成因区的下倾极限附近温度低50-100°C。

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