The stable operation of gas networks is an important optimization target. While for this task commonly finite volume methods are used, we introduce a new finite difference approach. With a summation by part formulation for the spatial discretization, we get well-defined fluxes between the pipes. This allows a simple and explicit formulation of the coupling conditions at the node. From that, we derive the adjoint equations for the network simply and transparently. The resulting direct and adjoint equations are numerically efficient and easy to implement. The approach is demonstrated by the optimization of two sample gas networks.
翻译:气体网络的稳定运行是一个重要的优化目标。 虽然对于这项任务使用了通常的有限量方法, 我们采用了一种新的有限差分法。 通过对空间离散化进行部分配方, 我们得到管道之间的明确通量。 这样就可以对节点上的混合条件进行简单明确的配方。 我们从中可以简单和透明地得出网络的连接方程式。 由此得出的直接和连接方程式在数字上是高效的, 易于执行。 优化两个抽样气体网络可以证明这种方法。