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A transient two-fluid model for the simulation of slug flow in pipelines—I. Theory

机译:瞬态两流体模型,用于模拟管道中的弹塞流-I。理论

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摘要

A one-dimensional transient two-fluid model is developed to predict transient slug flow in pipelines. To account for the interphase interactions, new constitutive relations for the drag coefficient and the virtual mass force for the slug flow regime are derived by applying the conservation equations to a geometrically simplified slug unit. New coefficients in the pressure gradient term in the two-fluid momentum conservation equations are also obtained to account for the non-uniform distribution of the phases and of the pressure drop along a slug unit. The new relations yield a more accurate treatment of the hydrodynamics of slug flow than traditional two-fluid models. Constitutive relations for other flow regimes can also be incorporated into the model, allowing the analysis of general transient two-phase flows in pipelines.
机译:建立了一维瞬态两流体模型来预测管道中的瞬态塞流。为了解决相间相互作用,通过将守恒方程应用于几何简化的段塞单元,可以得出阻力系数和段塞流态虚拟质量力的新本构关系。还获得了双流体动量守恒方程中压力梯度项的新系数,以说明相和沿段塞单元的压降的不均匀分布。与传统的两流体模型相比,新的关系可以更准确地处理团状流的流体动力学。还可以将其他流态的本构关系纳入模型,从而可以分析管道中的一般瞬态两相流。

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