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A NEW TYPE OF WATER HAMMER IN GAS-LIQUID TWO-PHASE FLUID LINES

机译:一种新型的煤气液体两相流体管线水锤

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As far as the author is aware there has been no previous work on the problem addressed in the present paper, namely water hammer analysis in two-phase flow pipes in which a bubble-bubble interaction, deformation of the tube cross-section, shear stress, and compressibility of liquid phase play a significant role. In this paper, new mathematical model that couples the generalized inhomogeneous wave equation of Lighthill-type with the generalized Rayleigh-Plesset equation is derived to simulate unsteady, quasi-one-dimensional bubbly flows. We should stress that all of above mentioned effects have been included in the formulation deduced from proposed theory. A high effective and accurate finite difference technique for the exact solution of governing equations and new parallel program by using MPI are developed. Based on the developed algorithm and computer parallel program various numerical experiments have been carried out to investigate the major fluid dynamical features of the water hammer in horizontal pipes. It is found from these computations that the advantages of our model and numerical technique are evident especially in the area of hydraulic transients dominated by bubble dynamics. We have revealed the oscillatory water hammer with fine structure and the low-amplitude high-frequency wave called the precursor.
机译:就作者知道,在本文中没有出现问题,即两相流管中的水锤分析,其中气泡气泡相互作用,管横截面的变形,剪切应力,液相的可压缩性起着重要作用。在本文中,推导出与广义瑞利 - Plesset方程的伸出灯型广义非均匀波方程耦合的新数学模型,以模拟不稳定,准一维气泡流。我们应该强调,所有上述效果都包含在从拟议理论推导的制剂中。开发了一种高效且准确的有限差分技术,用于通过使用MPI进行控制方程的精确解决方案和新的并行程序。基于所发育的算法和计算机并行程序,已经进行了各种数值实验,以研究水锤在水平管中的主要流体动力学特征。从这些计算中发现了我们的模型和数值技术的优点是显而易见的,特别是在由泡沫动力学主导的液压瞬变面积中。我们透露了具有精细结构和称为前体的低振幅高频波的振荡水锤。

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