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Sampling design for water distribution network chlorine decay calibration

机译:配水管网氯衰减校准的采样设计

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This paper provides a novel approach to determining optimal sampling locations for chlorine decay model calibration. Three questions are investigated: (1) What is the minimum number of chlorine sample locations needed? (2) How many combinations of sampling locations are available? (3) What is the optimal location combination? To answer the first two questions, the mathematical expressions of the chlorine concentrations between any two sampling locations are developed and sampling point relationship matrices are generated, then a mixed integer programming (MIP) algorithm is developed. Once obtained, the solutions to the first two questions are used to calculate the chlorine decay wall reaction coefficients and sensitivity matrix of chlorine concentration to wall reaction coefficients; then, sampling location combinations achieved in the second question are sorted using a D-optimality algorithm. The model frame is demonstrated in a case study.
机译:本文提供了一种确定氯衰减模型校准的最佳采样位置的新颖方法。研究了三个问题:(1)最少需要多少氯样品位置? (2)有多少种采样位置组合可用? (3)什么是最佳位置组合?为了回答前两个问题,建立了任意两个采样位置之间氯浓度的数学表达式,并生成了采样点关系矩阵,然后开发了混合整数规划(MIP)算法。一旦获得,将使用前两个问题的解来计算氯衰减壁反应系数和氯浓度对壁反应系数的敏感性矩阵。然后,使用D优化算法对第二个问题中实现的采样位置组合进行排序。在案例研究中演示了模型框架。

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