轴流泵作用下虹吸出口管内偏流机理的数值分析

IF 1.2 4区 工程技术 Q3 ENGINEERING, MECHANICAL
Fan Yang, Sheng-jie Sun, Xiaoyu Jin, Sihai Li, Xudong Xu, Yan Jin
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引用次数: 0

摘要

垂直泵站中常用的流动结构之一是虹吸出水管。它具有复杂的几何结构和内部流场,直接影响泵站的有效、安全、稳定运行。为了阐明不同流动条件下轴流泵引起虹吸出口管内部偏流的机理,以垂直轴流泵装置的整个流道为研究对象,采用数值模拟技术对垂直轴流泵装置的三维非定常流场进行了数值求解。采用物理模型试验对数值模拟结果进行了验证。研究结果表明:虹吸出口管弯头管入口表面和出口表面的流动存在水平偏置,且随着流量的增大,流动中的水平偏置程度逐渐减小,偏置流动比例逐渐减小。驼峰段的流动呈上下流动,当流量增大时,偏流率先上升后下降。导叶出口残余速度循环、弯头管壁面约束和流动惯性是导致出口偏流的主要原因;在不同的流动条件下,出口管内涡结构的形态有所不同;公开了泵装置各部分的能量转换特性,其中进水管的能量转换比例最低。在最优流动条件下,弯头进口管道的能量转换比例仅为1.04%左右,导叶、60°弯头管道和虹吸出口管道的能量转换比例显著且随时间波动。随着流量的增加,弯头进气管和虹吸出口管内的能量转换比例稳步增加,导叶和60°弯头管内的能量转换比例先下降后增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical analysis of the internal biased flow mechanism of the siphon outlet pipe under the action of axial flow pump
One of the often employed flow structures in vertical pumping stations is the siphon outlet pipe. It has a complicated geometric structure and internal flow field, which directly affects how effectively, safely, and steadily pumping stations operate. The entire flow conduit of the vertical axial flow pump device was adopted as the study object in order to elucidate the mechanism of the internal biased flow of the siphon outlet pipe caused by the axial flow pump under different flow conditions, and the three-dimensional unsteady flow field of the vertical axial flow pump device was numerically solved using the numerical simulation technique. Physical model tests were used to confirm the results of the numerical simulation. The findings demonstrate that there is a horizontal bias in the flow of the inlet surface and outlet surface of the elbow pipe of the siphon outlet pipe, and that when the flow rate rises, the degree of the horizontal bias in the flow gradually diminishes, and the ratio of biased flow gradually decreases. The flow in hump segment presents up-and-down flow, and when the flow rate increases, the ratios of biased flow first rises before falling. The major causes of the production of biased flow in the outlet pipe are residual velocity circulation at the guide vane's outlet, wall constraint at the elbow pipe, and flow inertia; Under various flow conditions, the morphologies of the vortex structures in the outlet pipe vary; the characteristics of the energy conversion of each part of the pump device are disclosed, with the inlet pipe having the lowest proportion of energy conversion. Under the optimal flow condition, the elbow-inlet pipe's proportion of energy conversion is only around 1.04%, and the proportions of the guide vane, 60° elbow pipe, and siphon outlet pipe's energy conversion are significant and fluctuate with time. The proportion of energy conversion in the elbow-inlet pipe and siphon outlet pipe steadily increases as flow rate rises, but the proportion in the guide vane and 60° elbow pipe drops initially before increasing.
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来源期刊
CiteScore
3.30
自引率
5.90%
发文量
114
审稿时长
5.4 months
期刊介绍: The Journal of Power and Energy, Part A of the Proceedings of the Institution of Mechanical Engineers, is dedicated to publishing peer-reviewed papers of high scientific quality on all aspects of the technology of energy conversion systems.
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