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Phenomenon of White Mist in Pipelines Rapidly Filling with Water with Entrapped Air Pockets

机译:管道中的白雾现象迅速充满气泡并夹带气穴

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摘要

The phenomenon of white mist in a rapidly filling pipeline containing an entrapped air pocket is numerically and experimentally investigated. The air-water flow patterns, pressure, and temperature histories are synchronously recorded to illustrate their interrelations. The white mist phenomenon is particularly observed during fast transients, especially during the first compression of the air pocket. Comparisons between calculations and experiments indicate that the white mist primarily reflects a condensation process. More specifically, the air temperature increases because of rapid compression of an entrapped air pocket, and the high temperature could cause water to adhere to vapor at the pipe surface. For fast transients, the first compression causes a near-adiabatic air compression, but heat exchange effects become more significant in the subsequent compression and expansion cycles. As the initial air length decreases, the maximum pressure first increases and then declines, with the most dangerous air length occurring when about 3.4% is initially occupied by air. The ratio of the maximum pressure to the driving pressure increases approximately linearly with respect to the upstream pressure. A local-interpolation elastic-water model is developed by considering air-temperature change and its validity is confirmed by comparing the model and experimental results.
机译:数值和实验研究了在快速充填的管道中夹杂着气穴的白雾现象。同步记录空气-水流模式,压力和温度历史,以说明它们之间的相互关系。在快速瞬变期间,尤其是在气袋的第一次压缩期间,尤其会观察到白雾现象。计算和实验之间的比较表明,白雾主要反映了冷凝过程。更具体地,由于夹带的气穴的快速压缩,空气温度升高,并且高温可能导致水粘附在管道表面处的蒸汽中。对于快速瞬变,第一次压缩会导致绝热空气压缩,但是热交换效果在随后的压缩和膨胀循环中会变得更加明显。随着初始空气长度的减小,最大压力先增大然后减小,最危险的空气长度发生在最初占空气约3.4%的时候。最大压力与驱动压力之比相对于上游压力近似线性增加。通过考虑气温的变化建立了局部插值弹性水模型,并通过与实验结果的比较证实了其​​有效性。

著录项

  • 来源
    《Journal of Hydraulic Engineering》 |2013年第10期|1041-1051|共11页
  • 作者单位

    College of Water Conservancy and Hydropower Engineering, Hohai Univ., 1 Xikang Rd., Nanjing 210098, China;

    College of Water Conservancy and Hydropower Engineering, Hohai Univ., 1 Xikang Rd., Nanjing 210098, China;

    Dept. of Civil Engineering, Univ. of Toronto, 35 St. George St., Toronto, ON, Canada M5S 1A4;

    College of Water Conservancy and Hydropower Engineering, Hohai Univ., 1 Xikang Rd., Nanjing 210098, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Water pipeline system; Transient flow; Entrapped air pocket; White mist; Air-water interface;

    机译:给水管道系统;瞬态流量气穴夹杂;白雾气水接口;
  • 入库时间 2022-08-18 00:21:29

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