基于叶轮速度的离心泵可视化高频 PIV 样品研究

IF 1.7 4区 计算机科学 Q3 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Xiao-Dong Liu, Zhu-Qing Liu, Xian-Bei Huang, Yao-jun Li, Wei Yang
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引用次数: 0

摘要

由于离心泵的几何结构复杂,其流动特性也比较复杂。基于微内循环实验台和高频 PIV 系统,测量了不同实验条件下的速度场,并对比分析了不同 PIV 采样频率下的速度值。结果表明,在相对速度误差不超过 5%的情况下,对于设计条件下转速为 600 r/min 的叶轮,高频 PIV 系统的最小采样频率应大于 2000 Hz。当叶轮速度为 400 r/min 和 500 r/min 时,最小采样频率必须分别高于 1428 Hz 和 1667 Hz。当叶轮速度降低到 300 r/min 时,最小采样频率只需达到约 1111 Hz。但是,在部分负荷条件下,叶轮需要更高的最低采样频率。叶轮转速为 600 r/min、500 r/min 和 400 r/min 时,最小采样频率应分别高于 3333 Hz、2500 Hz 和 2000 Hz。当叶轮转速低于 600 r/min 时,高频 PIV 系统的采样频率不应超过 5000 Hz。这些结果为离心泵中使用的高频 PIV 系统的构建提供了重要的参考指标。 图文摘要
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Study on the suitable high-frequency PIV sample for centrifugal pump visualization based on impeller speed

Study on the suitable high-frequency PIV sample for centrifugal pump visualization based on impeller speed

The flow characteristics in centrifugal pump are complicated due to its complex geometry structure. Based on micro-internal circulation experimental bench and high-frequency PIV system, the velocity field at different experimental conditions is measured and the velocity values under different PIV sample frequencies are compared and analyzed. The results indicate that within the relative velocity error limit of 5%, the minimum sample frequency of the high-frequency PIV system should be greater than 2000 Hz for the impeller with speed of 600 r/min at design condition. While the speeds of the impeller are 400 r/min and 500 r/min, the minimum sample frequency must be higher than 1428 Hz and 1667 Hz, respectively. The minimum sample frequency only needs to reach about 1111 Hz when the impeller speed is reduced to 300 r/min. However, it requires a higher minimum sample frequency for the impeller at part-load conditions. The minimum sample frequency should be higher than 3333 Hz, 2500 Hz and 2000 Hz for the impeller speed with 600 r/min, 500 r/min and 400 r/min, respectively. When the impeller speed is less than 600 r/min, the sample frequency of high-frequency PIV system should not exceed 5000 Hz. The results provide important reference indicators for the construction of high-frequency PIV system used in centrifugal pumps.

Graphical abstract

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来源期刊
Journal of Visualization
Journal of Visualization COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS-IMAGING SCIENCE & PHOTOGRAPHIC TECHNOLOGY
CiteScore
3.40
自引率
5.90%
发文量
79
审稿时长
>12 weeks
期刊介绍: Visualization is an interdisciplinary imaging science devoted to making the invisible visible through the techniques of experimental visualization and computer-aided visualization. The scope of the Journal is to provide a place to exchange information on the latest visualization technology and its application by the presentation of latest papers of both researchers and technicians.
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