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Incorporating the Modified Orifice Equation into Pipe Network Solvers for More Realistic Leakage Modeling

机译:将修改后的孔口方程式合并到管网求解器中,以进行更真实的泄漏建模

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It has been well established in several experimental and modeling studies that leak areas are often not fixed, but vary as linear functions of pressure. Replacing this linear equation into the orifice equation results in a two-part modified orifice leakage equation with head exponents of 0.5 and 1.5. The purpose of this study was to incorporate the modified orifice equation into the hydraulic network formulation and evaluate its impact on model performance. The conventional and modified software were applied to 600 instances of stochastic leakage distributions in three different pipe networks. It was found that the conventional power leakage equation results in significant leakage volume and flow-rate errors under certain conditions. In addition, a problem of nonconvergence of the conventional global gradient algorithm for leakage exponents greater than 2 was observed and is discussed. (c) 2017 American Society of Civil Engineers.
机译:在一些实验和模型研究中已经很好地确定,泄漏区域通常不是固定的,而是随压力的线性函数而变化的。将此线性方程式替换为孔口方程式,将产生两部分式修改后的孔口泄漏方程,其水头指数分别为0.5和1.5。这项研究的目的是将修改后的节流孔方程纳入液压网络公式,并评估其对模型性能的影响。常规软件和修改后的软件被应用于三个不同管网中的600个随机泄漏分布实例。已经发现,传统的功率泄漏方程在某些条件下会导致显着的泄漏量和流量误差。此外,还观察到并讨论了泄漏指数大于2的常规全局梯度算法的不收敛性问题。 (c)2017年美国土木工程师学会。

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