首页> 外文会议>Fluids Engineering Conference Vol.2 Pt.D >TRANSIENT ANALYSIS OF MIXED FREE-SURFACE-PRESSURIZED FLOWS WITH MODIFIED SLOT MODEL (PART1: COMPUTATIONAL MODEL AND EXPERIMENT)
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TRANSIENT ANALYSIS OF MIXED FREE-SURFACE-PRESSURIZED FLOWS WITH MODIFIED SLOT MODEL (PART1: COMPUTATIONAL MODEL AND EXPERIMENT)

机译:修正狭缝模型的混合自由面压缩流的瞬态分析(部分1:计算模型和实验)

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摘要

A new computational model is developed here to analyze the influence of entrapped air on free-surface-pressurized flows in a drainage system. A virtual slot with ceiling on the top of the pipe is introduced to treat a separated gas-liquid flow. This model is a modified model of Preissmann's and is applicable not only to open channel flow and closed conduit flow but also pressurized flow with entrapped air. Compared to experimental results using the model of 1/50 scale of actual drainage system, the calculation results show that the entrapped air in a horizontal pipe advances the time of pressure rising and makes the maximum value of pressure higher. The escape flow of entrapped air at a dropshaft is caused by long waves pushing the air in the horizontal pipe, and then the pipe slope affects the flow rate of air. The air compressibility has less effect on the transient separated air-water flow in the small-scale model.
机译:在此开发了一种新的计算模型,以分析截留的空气对排水系统中自由表面加压流的影响。引入了一个在管子顶部带有天花板的虚拟槽,以处理分离的气液流。该模型是Preissmann模型的改进模型,不仅适用于明渠流和封闭管道流,而且适用于夹带空气的加压流。与使用实际排水系统的1/50比例模型的实验结果相比,计算结果表明,水平管中截留的空气提前了压力上升的时间,并使压力最大值更高。长波将水平管中的空气推入长管中,从而导致进入轴的空气逸出,然后管的坡度影响空气的流量。在小规模模型中,空气可压缩性对瞬态分离空气流的影响较小。

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