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Development and autocalibration of an input-output model of chlorine transport in drinking water distribution systems

机译:饮用水分配系统中氯气输送的输入-输出模型的开发和自动校准

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Chlorine concentrations within drinking water distribution systems (DWDS) must be maintained between an Environmental Protection Agency enforced minimum and maximum values driven by formation of harmful disinfectant byproducts. The DWDS input-output (I-O) model developed expresses the chlorine concentration at a given pipe junction and time as a weighted average of exponentially decayed values of the concentrations at all adjacent upstream junctions. The upstream junction concentrations are known if they are a chlorine treatment point, or can be calculated in the same manner as the original unknown junction concentration. This is the basis for a recursive procedure with which the I-O model backtracks through the DWDS until all paths from consumption to treatment are found. Since the I-O model finds all paths from treatment to a given measurement, the reaction rate associated with chlorine decay at the pipe wall can be adjusted to improve predicted chlorine concentrations.
机译:饮用水分配系统(DWDS)中的氯浓度必须保持在环境保护署强制实施的由有害消毒副产物形成引起的最小值和最大值之间。建立的DWDS输入-输出(I-O)模型将给定管道连接处和时间的氯浓度表示为所有相邻上游连接处浓度的指数衰减值的加权平均值。如果上游结浓度是氯处理点,则已知该浓度,或者可以与原始未知结浓度相同的方式计算得出。这是递归过程的基础,通过该过程,I-O模型回溯通过DWDS,直到找到从消耗到处理的所有路径。由于I-O模型找到了从处理到给定测量的所有路径,因此可以调整与管壁处的氯衰减相关的反应速率,以提高预测的氯浓度。

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