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An Efficient Computational Scheme for Two-Phase Steam Condensation in the Presence of CO2 for Wellbore and Long-Distance Flow

机译:井筒和长距离流中CO2存在下两相蒸汽冷凝的有效计算方案

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Here we present an efficient and robust calculation scheme for two-phase, one-dimensional (1D) steady state steam condensation in the presence of CO2, based on conservation rules and thermodynamic phase relations. The mixing of fluids and phases is assumed to be homogeneous. Heat transfer is considered between the fluids and the ambient formations. For convenience, state equations are presented in terms of the entropy changes of individual phases, and the simple additive rule for the mixture. To monitor phase changes, the phase rule is checked. This investigation has practical significance for steam injection operation and long-distance pipe flow applications in the geothermal and mid- and up-stream oil and gas industries.
机译:在这里,我们基于守恒定律和热力学相位关系,提出了一种在CO2存在下的两相,一维(1D)稳态蒸汽冷凝的高效鲁棒计算方案。流体和相的混合被认为是均匀的。考虑在流体和周围地层之间的热传递。为方便起见,根据各个相的熵变化以及混合物的简单加法则来表示状态方程。为了监视相位变化,将检查相位规则。这项研究对于地热,中上游石油和天然气行业中的注汽操作和长距离管道流动应用具有实际意义。

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