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首页> 外文期刊>Journal of Hydraulic Engineering >Pressure Transients Caused by Air-Valve Closure while Filling Pipelines
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Pressure Transients Caused by Air-Valve Closure while Filling Pipelines

机译:填充管道时气门关闭引起的压力瞬变

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摘要

Air valves are normally installed at high points along undulating pipelines to allow for air discharge or intake during filling or dewatering. Initial filling of a newly constructed pipeline, or refilling a portion of an existing pipeline after a shut-down for maintenance purposes, can produce destructive pressure surges caused by air-valve closure. Methodologies for determining safe filling rates for the pipeline, taking into account factors such as air-valve characteristics, riser dimensions, driving head, and allowable working pressure, are proposed in this paper. An optimal filling method can be achieved either by a two-stage filling procedure, which comprises a fast filling rate during the first stage and a slower filling rate during the second stage when the water level approaches the highest air valve, or by using an antislam air valve. The comparison of computed transient pressures with test data indicates that the analytical models produce reasonable predictions of pressure surges caused by air-valve closure.
机译:空气阀通常安装在波浪形管道的高处,以允许在填充或脱水过程中排出或吸入空气。最初为新建管道填充或在出于维护目的而停机后重新填充现有管道的一部分,可能会由于空气阀关闭而产生破坏性的压力波动。本文提出了一种考虑到气门特性,立管尺寸,驱动扬程和允许工作压力等因素来确定管道安全填充率的方法。最佳的填充方法可以通过两阶段填充程序来实现,该过程包括当水位接近最高空气阀时在第一阶段中的填充速度快而在第二阶段中的填充速度慢,或者通过使用反灌气阀。计算出的瞬态压力与测试数据的比较表明,分析模型对由气门关闭引起的压力波动产生了合理的预测。

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