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首页> 外文期刊>Journal of Environmental Engineering >Intrusion within a simulated water distribution system due to hydraulic transients. I: Description of test rig and chemical tracer method
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Intrusion within a simulated water distribution system due to hydraulic transients. I: Description of test rig and chemical tracer method

机译:由于水力瞬变而侵入模拟水分配系统内。一:试验台说明及化学示踪法

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摘要

A pilot-scale test rig was designed and constructed to simulate intrusion behavior associated with hydraulic transients initiated by sudden events such as rapid valve closure or uncontrolled change in on/off pump status ("pump trip") in a water distribution system. After establishing steady state flow conditions, intrusion volumes were determined for 3.2 (1/8-in.) and 6.4 min (1/4-in.) diam orifices overlaid with a column of water that provided 91 trim (3 ft) of external head. Average intrusion volumes associated with hydraulic transient events were determined by mass balance calculations using cesium as the tracer chemical. Average intrusion volumes were 11.4 and 71.2 mL for the two diameters, respectively. Given similar conditions in a water distribution system (i.e., an available pathway and favorable pressures), pathogens in the soil and water surrounding a water main potentially can intrude into the pipe during short-term pressure transient events.
机译:设计并构造了中试规模的试验台,以模拟与水分配系统中突发事件(如快速关闭阀门或开/关泵状态(泵抽程)的不受控制的变化)引发的水力瞬变相关的侵入行为。建立稳定的流动条件后,确定3.2毫米(1/8英寸)和6.4分钟(1/4英寸)直径孔的侵入体积,这些孔用一列水覆盖,可提供91个修整(3英尺)的外部空间头。与水力瞬变事件相关的平均入侵量是通过使用铯作为示踪剂的化学物质的质量平衡计算确定的。两个直径的平均侵入体积分别为11.4和71.2 mL。给水分配系统中的条件类似(即可用的途径和有利的压力),在短期压力瞬变事件期间,水管周围土壤和水中的病原体可能会侵入管道中。

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