考虑基础流量的输水系统间歇泉现象实验研究
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(1.三峡金沙江云川水电开发有限公司宁南白鹤滩电厂;2.河海大学水利水电学院 )

作者简介:

李小亮(1984—),男,高级工程师,硕士,主要从事电站水工建筑物管理和项目管理工作。E-mail:li_xiaoliang@cypc.com.cn

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三峡金沙江云川水电开发有限公司宁南白鹤滩电厂科研项目(Z532302021)


Experimental study on geyser phenomena in water conveyance systems considering base flow
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(1.NingnanBaihetan Power Plant, Three Gorges Jinshajiang Yunchuan Hydropower Development Co., Ltd.; 2.Collegeof Water Conservancy and Hydropower Engineering, Hohai University)

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    摘要:

    针对输水系统在充水等过程中出现的水气突然喷发、局部压力骤变的间歇泉现象,设计并搭建了间歇泉水气两相瞬变流实验系统,通过上下游水箱的水位差间接控制基础流量,研究了含通气竖井的输水系统在充水过程中的水气两相瞬变过程,探究了间歇泉现象的发生机理与动态特征。实验结果表明:考虑基础流量的间歇泉瞬变过程可分为冲击气团阶段和喷发阶段,在冲击气团阶段,气团反复压缩膨胀,系统压力周期性波动,在喷发阶段,水气运动剧烈,基础流量越大,汇入竖管的气体越少,且如果该部分气体晚于自由液面抵达竖管顶部孔口,则易发生间歇泉现象;间歇泉现象可分为多次喷射型、无喷射型、单次喷射型与缓冲喷射型4种类型;间歇泉现象发生时气团破裂与聚合时引发的压力波的传播和叠加是造成不稳定压力波动的重要原因。

    Abstract:

    To investigate the geyser phenomenon characterized by sudden water-air eruptions and localized pressure surges during the filling process of water conveyance systems, an experimental system for transient water-air two-phase flow was designed and constructed. By utilizing the water level difference between upstream and downstream water tanks to indirectly control the base flow, the water-air two-phase transient process during the filling of a water conveyance system equipped with a ventilation shaft was investigated, aiming to explore the triggering mechanisms and dynamic characteristics of geyser phenomena. The experimental results indicate that the geyser transient process considering base flow can be divided into the air pocket impact stage and the eruption stage. During the air pocket impact stage, the air pocket undergoes repeated compression and expansion, accompanied by periodic pressure fluctuations. During the eruption stage, violent water-air interactions occur, a higher base flow rate results in less gas entrainment into the riser, and geyser phenomena are more likely to occur if the entrained gas arrives at the top orifice of the riser later than the free water surface. The geyser phenomena can be classified into four types: multiple-eruption type, no-eruption type, single-eruption type, and damped-eruption type. Additionally, the propagation and superposition of pressure waves induced by air pocket rupture and coalescence during geyser events are identified as significant contributing factors to the unstable pressure fluctuations.

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李小亮,何鑫,陈千寻,等.考虑基础流量的输水系统间歇泉现象实验研究[J].水利水电科技进展,2026,45(4):9-15, 49.(Li Xiaoliang, He Xin, Chen Qianxun, et al. Experimental study on geyser phenomena in water conveyance systems considering base flow[J]. Advances in Science and Technology of Water Resources,2026,45(4):9-15, 49.(in Chinese))

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  • 收稿日期:2025-03-19
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  • 在线发布日期: 2026-08-07
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