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叶顶间隙大小对螺旋离心泵内部压力脉动的影响

张华 陈斌 王炳祺 史长彪 沈登武

农业工程学报2017,Vol.33Issue(1):84-89,6.
农业工程学报2017,Vol.33Issue(1):84-89,6.DOI:10.11975/j.issn.1002-6819.2017.01.011

叶顶间隙大小对螺旋离心泵内部压力脉动的影响

Influence of tip clearance on internal pressure fluctuation of screw centrifugal pump

张华 1陈斌 2王炳祺 1史长彪 1沈登武3

作者信息

  • 1. 合肥工业大学机械工程学院,合肥230009
  • 2. 江苏大学流体机械工程技术研究中心,镇江212013
  • 3. 蓝深集团股份有限公司,南京211500
  • 折叠

摘要

Abstract

Screw centrifugal pump with single blade have some features such as large wrap angle and high degree of distortion.Considering the mold making and casting reasons,semi-open design is widely adopted,which causes a gap between the edge of the impeller and the bottom cover.This gap directly affects the operating efficiency of the unit,the inside flow field,pressure fluctuation and vibration characteristics are influenced as well.In this paper,we focused on the relationship between tip clearance and extemal characteristics,and on the influences of the internal fluctuation.Hydraulic design and structural design were conducted aiming at semi-open screw centrifugal pump of which specific speed was 237,by means of adjusting the tip clearance and judging the current and voice,the minimum tip clearance while unit operating normally was 0.3mm,Extemal characteristic test was conducted on the open type test bench of two stage precisions which met national standards,parameters of the best operating point were as follows,head:9.05 m,flow rate:196.9 m3/h,power:6.84 kW,efficiency:70.92%.Then the tip clearance was changed to 0.5 mm and 0.8 mm,the ratio with impeller diameter was 0.13%,0.22% and 0.35%,respectively.External characteristic test was done separately,the influence of tip clearance to external characteristic was analyzed.Meanwhile,aiming at the design point of three kinds of tip clearance,pressure fluctuation was monitored at the edge and middle area of impeller and third section and tongue area of volute with sampling frequency was 8 192 and sampling time of each working condition was 30-50 s,phase reference technique was used to accomplish the separate of whole cycle's data sample.A series of pressure waveform,pressure coefficient waveform and frequency domain diagram were plotted and analyzed at the last.Results showed that when the clearance was changed from 0.3 m to 0.5 mm,head and efficiency decreased by 0.74 m and 3.6% respectively.When the clearance was changed from 0.5 m to 0.8 mm,head and efficiency decreased by 1.16 m and 5.3%,respectively.In view of pump in this paper,the allowed clearance range was 0.3 -0.5 mm,the ratio with impeller diameter was 0.13%-0.22%,which provided reference for the following research.Besides,at the impeller inlet area,there existed a large area of negative pressure,pressure leakage was serious when enlarging the tip clearance,thus increasing the average pressure within the cycle,which caused the pressure coefficient waveform of 0.8 mm was most gentle and 0.3 mm was most fluctuant.At the same number times of rotating frequency,the center of the impeller was larger than the inlet edge of the blade,and it was easier to capture the high frequency conversion characteristics,the main reason was that the middle radius was large and working ability was strong.In the case of 0.8 mm clearance,when pressure fluctuation was in the process of gradually increasing from the minimum value,there occurred a phenomenon of sudden drop slightly and then rose up again.The pressure wave trend at the third section and tongue of the volute was the opposite,at these two points,the amplitude of main frequency was largest when clearance was 0.3 mm,almost the same when clearance was 0.5 m and 0.8 mm.The amplitude of the main frequency at these four points was from large to small:middle area of the impeller,inlet area of the impeller,third section of the volute,tongue of the volute.

关键词

离心泵/叶片/叶轮/螺旋叶轮/叶顶间隙/外特性/压力脉动

Key words

centrifugal pumps/blade/impellers/screw impeller/tip clearance/external characteristic/pressure fluctuation

分类

机械制造

引用本文复制引用

张华,陈斌,王炳祺,史长彪,沈登武..叶顶间隙大小对螺旋离心泵内部压力脉动的影响[J].农业工程学报,2017,33(1):84-89,6.

基金项目

安徽省合肥工业大学“秋实计划”A类计划项目(JZ2015QSJH0246) (JZ2015QSJH0246)

中央高校基本科研业务费专项资金资助(JZ2015HGBZ 0129) (JZ2015HGBZ 0129)

江苏大学国家水泵及系统工程技术研究中心开放基金资助(NR CP-201603). (NR CP-201603)

农业工程学报

OA北大核心CSCDCSTPCD

1002-6819

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