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首页> 外文期刊>Physica, D. Nonlinear phenomena >Operator splitting method for simulation of dynamic flows in natural gas pipeline networks
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Operator splitting method for simulation of dynamic flows in natural gas pipeline networks

机译:天然气管道网络中动态流模拟的操作员分裂方法

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摘要

We develop an operator splitting method to simulate flows of isothermal compressible natural gas over transmission pipelines. The method solves a system of nonlinear hyperbolic partial differential equations (PDEs) of hydrodynamic type for mass flow and pressure on a metric graph, where turbulent losses of momentum are modeled by phenomenological Darcy-Weisbach friction. Mass flow balance is maintained through the boundary conditions at the network nodes, where natural gas is injected or withdrawn from the system. Gas flow through the network is controlled by compressors boosting pressure at the inlet of the adjoint pipe. Our operator splitting numerical scheme is unconditionally stable and it is second order accurate in space and time. The scheme is explicit, and it is formulated to work with general networks with loops. We test the scheme over range of regimes and network configurations, also comparing its performance with performance of two other state of the art implicit schemes. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们开发了一种操作员分裂方法,以模拟传输管道上的等温可压缩天然气的流动。该方法求解用于在公制曲线图上的质量流量和压力的流体动力学类型的非线性双曲偏微分方程(PDE)的系统,其中湍流的损失是通过现象达西西巴赫摩擦模拟的。通过网络节点处的边界条件保持质量流量平衡,其中天然气从系统注入或抽出。通过网络的气体流量由压缩机控制伴随管道入口处的压力。我们的操作员分割数值方案是无条件稳定的,它是空间和时间的二阶准确。该方案是显式的,它被配制成与循环的通用网络一起使用。我们测试方案过度的制度和网络配置,也比较了其性能,其性能具有另外两种艺术隐式方案的性能。 (c)2017 Elsevier B.v.保留所有权利。

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