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A Method for Quantitative Interpretation of Stationary Thermal Fields for Layered Media

机译:分层媒体静止热场定量解释方法

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A new method to solve thermal conjugacy problems is presented for layered models with a thermal conductivity jump at their boundaries. The purpose of this method is to approximate the inverse thermal conductivity coefficient, which has breaks, by using a combination of step functions. A generalized continuous operator is constructed in a continuous space of piecewise–homogeneous media. We obtained an analytical solution for the stationary problem of heat conjugacy in the layered model with finite thickness and with Dirichlet–Neumann conditions at the external boundaries. An algorithm was constructed for downward continuation of the heat flux to depths that correspond to the top of the mantle layer. The advantages of this method are illustrated by testing the crustal seismic, gravity and geothermal data of a study area in the Urals and neighboring regions of Russia. We examined statistical relations between density and thermal parameters and determined heat flux components for the crust and the mantle. The method enables a downward continuation of the heat flux to the base of the upper mantle and allows us to determine the thermal effects of the lateral and vertical features of deep tectonic structures.
机译:用于解决热缀合性问题的新方法是针对层状模型提出了具有导热性的层状模型。该方法的目的是通过使用步函数的组合来近似逆导热系数,该系数具有断裂。广义连续操作员构造在分段 - 均匀介质的连续空间中。我们在具有有限厚度和外界处的Dirichlet-Neumann条件下,获得了分层模型中热缀合物的静止问题的分析解决方案。构造了一种算法,用于向下继续加热通量,以对应于地幔层顶部的深度。通过测试俄罗斯乌拉尔和邻近地区的研究区域的地壳地震,重力和地热数据来说明该方法的优点。我们检查了密度和热参数之间的统计关系,并确定了地壳和地幔的热通量部件。该方法使热通量向下延续到上罩的基部,并允许我们确定深构造结构的横向和垂直特征的热效应。

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