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Unified Framework for Deriving Simultaneous Equation Algorithms for Water Distribution Networks

机译:配水管网联立方程算法的统一框架

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摘要

The known formulations for steady-state hydraulics within looped water distribution networks are rederived in terms of linear and nonlinear transformations of the original set of partly linear and partly nonlinear equations that express conservation of mass and energy. All of these formulations lead to a system of nonlinear equations that can be linearized as a function of the chosen unknowns using either the Newton-Raphson (NR) or the linear theory (LT) approaches. This produces a number of different algorithms, some of which are already known in the literature, whereas others have been originally developed within this work. For the sake of clarity, all the different algorithms were rederived using the same analytical approach and a unified notation. They were all applied to the same test case network with randomly perturbed demands to compare their convergence characteristics. The results show that all of the linearly transformed formulations have exactly the same convergence rate, whose value depends on whether a NR or LT algorithm was used, and that they converge faster than the nonlinearly transformed formulations do. A number of computational factors suggest that the global algorithm, in either its NR or LT form, is the most attractive of the various formulations to implement.
机译:根据表示质量和能量守恒的原始的部分线性和部分非线性方程组的线性和非线性变换,重新获得了循环水分配网络内稳态液压的已知公式。所有这些公式都导致一个非线性方程组,可以使用牛顿-拉夫森(NR)或线性理论(LT)方法将其线性化为所选未知量的函数。这产生了许多不同的算法,其中一些在文献中已经为人所知,而其他算法最初是在这项工作中开发的。为了清楚起见,使用相同的分析方法和统一的符号重新列出了所有不同的算法。它们都被应用于具有随机扰动需求的同一测试用例网络,以比较它们的收敛特性。结果表明,所有线性变换的公式都具有完全相同的收敛速度,其收敛速度取决于使用的是NR还是LT算法,并且它们的收敛速度比非线性变换的公式更快。许多计算因素表明,以NR或LT形式出现的全局算法是要实施的各种公式中最吸引人的。

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