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Mechanisms that lead to violent geysers in vertical shafts

机译:导致垂直轴上暴力间歇钟的机制

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Supported with laboratory observations, this paper describes the mechanisms that lead to violent eruptions in stormwater and combined sewer systems. This paper also derives the upper limit for the geyser eruption velocity in these systems. The mathematical analysis shows that the maximum velocity of a gas-liquid mixture eruption in a vertical shaft is that of its mixture sound speed. The analysis also shows that the pressure gradient needs to increase substantially for the eruption velocity to approach the air-water mixture sound speed. The derived upper limit for the geyser eruption velocity is assessed using two test cases: a geyser event in a stormwater collection system in Minneapolis and our laboratory experiments.
机译:本文支持实验室观察,介绍了导致雨水和组合下水道系统剧烈爆发的机制。本文还导出了这些系统中喷泉喷发速度的上限。数学分析表明,垂直轴中的气液混合物喷发的最大速度是其混合声速的速度。分析还表明,压力梯度需要基本上增加喷发速度以接近空气 - 水混合物声速。使用两个测试用例评估了喷泉喷发速度的衍生的上限:明尼阿波利斯的雨水收集系统中的喷泉事件以及我们的实验室实验。

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