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Experimentally Determined Solute Mixing under Laminar and Transitional Flows at Junctions in Water Distribution Systems

机译:在水分配系统的交叉点下的层层和过渡流下的实验确定溶质混合

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摘要

The water quality model in water distribution systems adopted in EPANET and other commercial simulation programs assumed perfect mixing of solute at pipe junctions. However, imperfect solute mixing at pipe junctions at turbulent flow has been reported. Yet, the mixing under laminar and transitional flow is rarely reported and thus is the focus of experimental study reported here. The experimental results show that the average Reynolds number and the outflows Reynolds number ratio controls degrees of the mixing at the pipe junctions. For cross junctions, the mixing degree is a function of the average Reynolds number in three regions; each has different mixing mechanisms and mathematical relationship. For double-Tee junctions, the dimensionless connecting pipe length plays a more important role than the Reynolds number ratios of outflows and average Reynolds number on mixing because a longer connecting pipe length gives more mixing space and time for the water flow mixing.
机译:EPANET和其他商业仿真程序采用的水分配系统中的水质模型假设在管道连接处的溶质完美混合。然而,已经报道了湍流在管连接处的不完美溶质混合。然而,很少报道层流和过渡流程下的混合,因此是这里报告的实验研究的重点。实验结果表明,平均雷诺数和外流雷诺数比控制在管道连接处的混合度。对于交叉连接,混合度是三个区域的平均雷诺数的函数;每个都具有不同的混合机制和数学关系。对于双T型连接,无量纲连接管长度比混合上的流出和平均雷诺数的雷诺数比作用更重要的作用,因为更长的连接管长度给出了水流动混合的更多混合空间和时间。

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