考虑复合旋转效应的离心泵流体激振特性研究

IF 10.1 2区 工程技术 Q1 ENGINEERING, MECHANICAL
Wenhao Zhou, Dongliang Yu, Yifan Wang, Junlin Shi, B. Gan
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引用次数: 2

摘要

为了研究离心泵内复合旋转运动下流动特性与流体诱导力之间的关系机理,本文选取RNG k-ε模型,基于N-S方程对具有叶轮偏心的低比转速离心泵进行了数值模拟。研究了流体诱导力随叶轮偏心距的变化规律,以及不同工况和转速下离心泵内部流场的非定常流动特性,讨论了叶轮流体诱导力与内部流场特性的关系。结果表明,流体诱导力与压力系数的变化趋势相似。当转速变化和流量相同时,不同转速下的压力系数几乎一致。随着叶轮转速和叶轮偏心距的增大,叶轮与蜗壳隔舌之间的动、静干扰更加显著,叶轮周围压力分布的不均匀使得离心泵内部流动更加无序,增大了蜗壳隔舌附近的流体诱导力。研究结果可为准确掌握离心泵内部激励原理提供重要的参考价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RESEARCH ON THE FLUID-INDUCED EXCITATION CHARACTERISTICS OF THE CENTRIFUGAL PUMP CONSIDERING THE COMPOUND WHIRL EFFECT
In order to study the correlation mechanism between the flow characteristics and the fluid-induced force under the compound whirl motion in the centrifugal pump, the RNG k-ε model is selected in this paper to simulate a low specific speed centrifugal pump with impeller eccentricity based on the N-S equation. The changes of fluid-induced force with impeller eccentricity and the unsteady flow characteristics of the internal flow field of centrifugal pump under different flow conditions and rotation speeds are investigated, and the relationship between the fluid-induced force of the impeller and the internal flow field characteristics is discussed. The results show that the trend of fluid-induced force and the pressure coefficient is similar. When the rotation speed changes and when the flow is similar, the pressure coefficient under different rotation speeds almost coincides. With the increase of impeller speed and impeller eccentricity, the dynamic and static interferences between the impeller and the volute tongue are more significant, the uneven distribution of the pressure around the impeller makes the internal flow of centrifugal pump more disordered and increases the fluid-induced force near the volute tongue. The research results can provide important reference value for accurately grasping the internal flow excitation principle of the centrifugal pump.
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来源期刊
CiteScore
14.40
自引率
2.50%
发文量
12
审稿时长
6 weeks
期刊介绍: Facta Universitatis, Series: Mechanical Engineering (FU Mech Eng) is an open-access, peer-reviewed international journal published by the University of Niš in the Republic of Serbia. It publishes high-quality, refereed papers three times a year, encompassing original theoretical and/or practice-oriented research as well as extended versions of previously published conference papers. The journal's scope covers the entire spectrum of Mechanical Engineering. Papers undergo rigorous peer review to ensure originality, relevance, and readability, maintaining high publication standards while offering a timely, comprehensive, and balanced review process.
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