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The model and the methods for numerical simulation of wave action of real working fluids in pipelines

机译:管道实际工作流体波动作用数值模拟的模型及方法

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The conservation laws and the equations of state for quasi-1D motion of compressible fluid in pipeline are formulated in general form, along with the conservative monotone methods suitable for real (multi-component, multiphase) working fluids. The objective is to present a concise approach to construct a general purpose model of pipeline flow for the applied software package, and to present some validation results. The known achievements on higher order monotone schemes for the hyperbolic conservation laws are applied to solve generalized problems of flow in pipes. Specifically, characteristic-based reconstruction and approximate solution to Riemann problem in Godunov-type schemes are used to incorporate real working fluids' equations of state into explicit numerical schemes. Preliminary validation of the model and the computer code is done for equation of state of perfect gas as a special case. Shown are the solutions to problems for 2 validation cases: (a) Riemann problem (compared with exact solution) and (b) problem of wave action (compared with the experimental data obtained on a single-cycle installation). The results encourage further generalization and testing the model applied to real and multiphase fluids and for compliant pipes.
机译:守护法和管道中可压缩液中可压缩流体的Quasi-1D运动的方程,通常是一种全文,以及适用于真实(多组分,多相)工作流体的保守单调方法。目的是呈现一个简洁的方法来构建应用软件包的流水线流量的通用模型,并呈现一些验证结果。适用于双曲保守法的高阶单调方案的已知成果,用于解决管道流动的广义问题。具体而言,Godunov型方案中的基于特征的重建和近似解的riemann问题用于将状态的真实工作流体的方程纳入显式数值方案。模型和计算机代码的初步验证是针对完美气体状态作为特殊情况的状态的。显示了2个验证案例问题的解决方案:(a)riemann问题(与精确解决方案相比)和(b)波动的问题(与单周期安装上获得的实验数据相比)。结果鼓励进一步的泛化和测试应用于实际和多相流体的模型和柔顺的管道。

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