• CN:11-2187/TH
  • ISSN:0577-6686

›› 2013, Vol. 49 ›› Issue (16): 147-152.

• 论文 • 上一篇    下一篇

扫码分享

离心泵起动过程的外特性试验研究

张玉良;朱祖超;崔宝玲;李昳   

  1. 浙江理工大学浙江省流体传输技术研究重点实验室;浙江大学流体动力与机电系统国家重点实验室
  • 发布日期:2013-08-20

Experimental Investigation of External Performance of Prototype Centrifugal Pump during Startup Period

ZHANG Yuliang;ZHU Zuchao;CUI Baoling;LI Yi   

  1. The Province Key Lab of Fluid Transmission Technology, Zhejiang Sci-Tech University The State Key Laboratory of Fluid Power Transmission and Control, Zhejiang University
  • Published:2013-08-20

摘要: 为探索一台离心泵在起动过程中的瞬态特性,在不同阀门开度情况下,进行外特性试验和无量纲化分析研究。结果表明:转速上升规律基本不变,主要取决于动力源自身起动特性,而不依赖于工况点。流量在起动初期上升较为缓慢,延迟于转速而上升到稳定值,并且随阀门开度的增加延迟变得更为严重。在较小阀门开度范围内,压力冲击随阀门开度的增大呈现减小趋势;在较大阀门开度范围内,压力冲击随阀门开度的增大呈现增大趋势。在起动过程中普遍存在功率冲击现象。量纲一的扬程在启动初期存在极大值,随后迅速下降至最小值,而后又上升至稳定值;量纲一的体积流量始终呈现上升趋势。准稳态假设无法适用于瞬时起动过程的精确分析。

关键词: 离心泵, 量纲一分析, 起动, 试验研究, 外特性

Abstract: In order to explore the transient characteristics of a prototype centrifugal pump during startup period, the variations of the external performance of the pump are recorded in experiments at different discharge valve openings, and then the non-dimensional parameters of the flow rate and head are also used to analyze the transient behavior. The result shows that the rise characteristic of the rotational speed is not basically changed by working points, which mainly depends on the startup characteristics of the driving motor. Compared with the rapid rise of the rotational speed, the rising speed of the flow rate is relatively low at the beginning of the startup. Moreover, the flow rate lags behind the rotational speed to rise to final stable value, and the delay becomes more severe as the discharge valve opening increases. In the range of smaller valve opening, the pressure impact shows decrease tendency as the discharge valve opening increases; while in the range of higher valve opening, the pressure impact shows increase tendency as the discharge valve opening increases. There generally exists the shaft power impact phenomenon in the process of startup. The non-dimensional analysis shows that the non-dimensional instantaneous head is of extremum at the very beginning of startup, and quickly falls to the minimum, then gradually rises to final value. The non-dimensional instantaneous flow rate always shows a rise trend during whole startup period. It is found that the quasi-steady assumption can not be used to accurately assess the transient flow during startup period.

Key words: Centrifugal pump, Experimental investigation, External performance, Non-dimensional analysis, Startup

中图分类号: