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变频调速水泵装置变速特性试验研究
引用本文:侯慧敏,周冬蒙,田俊姣,田媛,杨少卫.变频调速水泵装置变速特性试验研究[J].水电能源科学,2020,38(6):154-157.
作者姓名:侯慧敏  周冬蒙  田俊姣  田媛  杨少卫
作者单位:兰州理工大学能源与动力工程学院,甘肃兰州730050;华北水利水电大学水利学院,河南郑州450046;河南省水工结构安全工程技术研究中心,河南郑州450046
基金项目:国家自然科学基金项目 (51579102,31360204);河南省高校创新团队项目(19IRTSTHN030);河南省科技厅科技创新人才支持计划(174200510020);宁夏回族自治区水利科技专项(TYZB ZFCG 2017 31)
摘    要:为探明变频调速水泵系统中水泵、电机和变频器的综合效率与水泵转速间的关系,通过试验得到不同转速对应的流量和综合效率,并基于最小二乘法对所得数据进行拟合分析。结果表明,在泵站实际运行中,标准比例律公式并不适用于所有的频率范围,变频器调频范围在39.0~41.5Hz时,水泵严重偏离高效区运行,效率值在0%~70.4%间急剧上升,调频范围在41.5~50.0Hz时,效率值在82.28%~88.75%间上升速率较缓;针对水泵变频前后频率比与流量、效率比的关系所拟合的关系式的相关系数分别为0.996、0.981,表明拟合关系式具有较高的可靠性,变频前后的转速比与流量比成二次相关关系,与效率比成三次相关关系。该研究结果可为实际工程中变频调速水泵调频范围的计算提供有益借鉴。

关 键 词:变频调速  水泵  变速特性  综合效率  转速  频率

Experimental Study on Frequency Conversion Speed Regulation Characteristic of Water Pump Device
HOU Hui-min,ZHOU Dong-meng,TIAN Jun-jiao,TIAN Yuan,YANG Shao-wei.Experimental Study on Frequency Conversion Speed Regulation Characteristic of Water Pump Device[J].International Journal Hydroelectric Energy,2020,38(6):154-157.
Authors:HOU Hui-min  ZHOU Dong-meng  TIAN Jun-jiao  TIAN Yuan  YANG Shao-wei
Affiliation:(College of Energy and Power Engineering,Lanzhou University of Technology,Lanzhou 730050,China;School of Water Conservancy,North China University of Water Resources and Electric Power,Zhengzhou 450046,China;Henan Provincal Hydraulic Structure Safety Engineering Research Center,Henan Province,Zhengzhou 450046,China)
Abstract:In order to find out the relationship between the comprehensive efficiency of pumps, motors and transducers and the speed of pumps in variable frequency speed regulating pump system, the flow rate and comprehensive efficiency corresponding to different speeds are obtained through experimental research. And then the obtained data are fitted and analyzed based on the least square method. The results show that the standard ratio formula is not applicable to all frequency ranges in the actual operation of pumping stations. When the frequency range of frequency converter is 39 Hz to 41.5 Hz, the pump deviates from the high efficiency zone seriously, and the efficiency rises sharply between 0% and 70.4%. While the efficiency rises slowly between 82.28% and 88.75% when the frequency range is 41.5 Hz to 50 Hz. The correlation coefficients between flow rate and efficiency are 0.996 and 0.981, which indicates that the fitting relationship has high reliability. The frequency ratio before and after frequency conversion has a quadratic correlation with flow rate ratio and a cubic correlation with efficiency ratio. The research results can provide useful reference for the calculation of frequency modulation range of variable frequency speed regulating pump in practical engineering.
Keywords:frequency conversion speed regulation  pump  variable speed characteristic  comprehensive efficiency  rotating speed  frequency
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