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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 >large-scale lateral heat and fluid transport in the seafloor: revisiting the well-mixed aquifer model
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large-scale lateral heat and fluid transport in the seafloor: revisiting the well-mixed aquifer model

机译:海底的大规模横向热和流体传输:重新研究混合均匀的含水层模型

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摘要

Large-scale, lateral fluid flow through oceanic crust provides an explanation for regionally low heat flow in several seafloor settings. A well-mixed aquifer (WMA) model provides a quantitative and conceptual tool for explaining anomalously low heat flow based on an analytical representation of fluid and heat flow. Assuming lateral fluid flow in basement in a layer directly below the ocean sediments. We present an extended well-mixed aquifer (EWMA) model that allows fluid flow at greater depths within the oceanic crust. Flow through a deeper permeable layer extracts more heat than equivalent flow through a shallower layer of equal thickness, and may help to reconcile global heat flow and seafloor permeability data, since deeper flow does not require velocities as great as shallow flow to account for the same heat loss, and thus permeability can be lower. Numerical simulations that test the hydrodynamic validity of the WMA and EWMA equations indicate that the analytical models provide reasonable approximations of large-scale, lateral heat transport when lateral fluid flow in he crust is confined to thin layers. The efficiency of lateral heat transport is reduced as vertical mixing within the lateral flow layer increases.
机译:流经大洋地壳的大规模侧向流体为几种海底环境中区域性低热流提供了解释。充分混合的含水层(WMA)模型提供了一种定量和概念性的工具,用于基于对流体和热流的解析表示来解释异常低的热流。假设地下室中的横向流体在海洋沉积物正下方的一层中流动。我们提出了一种扩展的充分混合的含水层(EWMA)模型,该模型允许流体在洋壳内更深的深度流动。流过较深的渗透层比流过相等厚度的较浅层的热量要多,这可能有助于调和整体热流和海底渗透率数据,因为深层的流不需要与浅层的流一样大的速度来说明相同的问题。热损失,因此渗透率可以较低。检验WMA和EWMA方程的水动力有效性的数值模拟表明,当地壳中的侧向流体流限于薄层时,分析模型可以为大规模的侧向热传递提供合理的近似值。随着横向流动层内的垂直混合增加,横向传热的效率降低。

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