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首页> 外文期刊>Discrete and continuous dynamical systems >WEAK SOLUTIONS OF A GAS-LIQUID DRIFT-FLUX MODEL WITH GENERAL SLIP LAW FOR WELLBORE OPERATIONS
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WEAK SOLUTIONS OF A GAS-LIQUID DRIFT-FLUX MODEL WITH GENERAL SLIP LAW FOR WELLBORE OPERATIONS

机译:井筒作业中具有一般滑移定律的气液漂移通量模型的弱解

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摘要

In this work we study a compressible gas-liquid models highly relevant for wellbore operations like drilling. The model is a drift-flux model and is composed of two continuity equations together with a mixture momentum equation. The model allows unequal gas and liquid velocities, dictated by a so-called slip law, which is important for modeling of flow scenarios involving for example counter-current flow. The model is considered in Lagrangian coordinates. The difference in fluid velocities gives rise to new terms in the mixture momentum equation that are challenging to deal with. First, a local (in time) existence result is obtained under suitable assumptions on initial data for a general slip relation. Second, a global in time existence result is proved for small initial data subject to a more specialized slip relation.
机译:在这项工作中,我们研究了与钻井等井眼作业高度相关的可压缩气液模型。该模型是漂移-通量模型,由两个连续性方程以及混合动量方程组成。该模型允许由所谓的滑动定律规定的不相等的气体和液体速度,这对于涉及例如逆流流动的流动情况的建模很重要。该模型在拉格朗日坐标中考虑。流体速度的差异引起了混合动量方程中难以处理的新项。首先,在适当的假设下,对于一般滑动关系,在初始数据上获得了局部(及时)存在的结果。其次,对于较小的初始数据,经过更专业的滑移关系证明了全局存在时间的结果。

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