We consider the simulation of barotropic flow of gas in long pipes and pipe networks. Based on a Hamiltonian reformulation of the governing system, a fully discrete approximation scheme is proposed using mixed finite elements in space and an implicit Euler method in time. Assuming the existence of a smooth subsonic solution bounded away from vacuum, a full convergence analysis is presented based on relative energy estimates. Particular attention is paid to establishing error bounds that are uniform in the friction parameter. As a consequence, the method and results also cover the parabolic problem arising in the asymptotic large friction limit. The error estimates are derived in detail for a single pipe, but using appropriate coupling conditions and the particular structure of the problem and its discretization, the main results directly generalize to pipe networks. Numerical tests are presented for illustration.
翻译:我们考虑模拟长管和管道网络中天然气的粗气流。根据汉密尔顿式调整管理制度的结果,提议采用空间混合有限元素和隐含电极方法,采用完全离散的近似办法,假设存在从真空中分离出来的平滑次声波溶液,则根据相对能源估计进行完全趋同分析,特别注意确定摩擦参数中统一的误差界限。结果包括无药用大摩擦限度中产生的抛物线问题。误差估计数是用一个管子的详尽方法得出的,但采用适当的混合条件和问题的特殊结构及其离散性,主要结果直接概括到管道网络。数字测试是用来说明的。