Experimental investigation of storm sewer geyser using a large-scale setup

Pratik Mahyawansi, Sumit R. Zanje, Abbas Sharifi, Dwayne McDaniel, Arturo S. Leon
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Abstract

The storm sewer geyser is a process where an air–water mixture violently erupts from a manhole. Despite the low hydrostatic pressure, violent eruptions can achieve a height of tens of meters above the ground. This current study experimentally investigates large-scale violent geysers using a large air pocket inserted from a pressurized air tank. The total length of the pipe system is approximately 88 m with a 0.1572 m diameter pipe. This large-scale experiment facilitates the investigation of spontaneous geyser eruptions. This study identifies the role of air–water volume ratio and coefficient of pressure (ratio of absolute initial static pressure to initial dynamic pressure) on the geyser intensity using eruption images and pressure plots. A total of 116 cases are tested, in which the volume ratio is parametrically increased from 0 to 1.1 under various operating conditions. A geyser score is defined to quantify the geyser eruption nature based on visual observations. The key findings are as follows: first, a sharp transition in geyser intensity is observed at the critical volume ratio of 0.5, and pre-transition and post-transition intensity exhibit a linear relationship with the volume ratio; and second, the critical volume ratio linearly varies with the coefficient of pressure.
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利用大型装置对暴雨下水道喷泉进行实验研究
雨水渠喷泉是一种空气-水混合物从沙井中猛烈喷发的过程。尽管静水压力很低,但剧烈喷发可达到距地面数十米的高度。本研究利用从加压气罐中插入的大型气囊对大规模剧烈喷泉进行了实验研究。管道系统的总长度约为 88 米,管道直径为 0.1572 米。这一大型实验为研究间歇泉的自发喷发提供了便利。这项研究利用喷发图像和压力图确定了气水容积比和压力系数(初始绝对静压与初始动压之比)对间歇泉强度的作用。共测试了 116 个案例,在不同的运行条件下,体积比从 0 增加到 1.1。根据视觉观察,定义了间歇泉评分,以量化间歇泉的喷发性质。主要发现如下:首先,在临界体积比为 0.5 时,间歇泉强度出现急剧转变,转变前和转变后的强度与体积比呈线性关系;其次,临界体积比与压力系数呈线性变化。
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