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仿海豚皮肤结构的功能表面提高离心泵效率

商延赓 金娥 可庆朋 韩亚民 高志桦 田丽梅

农业工程学报2016,Vol.34Issue(7):72-78,7.
农业工程学报2016,Vol.34Issue(7):72-78,7.DOI:10.11975/j.issn.1002-6819.2016.07.010

仿海豚皮肤结构的功能表面提高离心泵效率

Efficiency improvement of centrifugal pump with function surface imitating dolphin skin structure

商延赓 1金娥 1可庆朋 1韩亚民 2高志桦 3田丽梅1

作者信息

  • 1. 吉林大学工程仿生教育部重点实验室,长春 130022
  • 2. 吉林珲春矿业集团,珲春 133300
  • 3. 青岛四方车辆研究所有限公司,青岛,266031
  • 折叠

摘要

Abstract

In the present study, 2 bionic functional surfaces mimicking from shark skin and dolphin skin respectively were designed and constructed. The simplified riblet mimicking from shark skin was sculptured on the cast iron, and such model was called Model 1 in this study. The riblet was controlled by 3 parameters: the depth of riblet, the aspect ratio and the spacing of riblet. The Model 2 was designed on the basis of Model 1. A layer of elastic material was coated on the Model 1, and this kind of bionic surface was called Model 2. The 200 QJ50-26 type centrifugal pump which was produced by Jilin Aojitong Pump Company, Limited was selected as the implementation carrier of the 2 bionic models, and the study on pump efficiency enhancement by above 2 models was performed in the present paper. There were 3 groups of pumps selected in the experiment. The samples 1 and 2 were the pumps whose impeller surface adopted Model 1, the samples 3 and 4 adopted Model 2 on the pumps impeller, and the sample 5 was a pump with ordinary impeller. The experimental results showed that compared to the sample 5, the pump efficiency of the samples 1, 2, 3 and 4 was all improved effectively in the effective working flow range. The pump efficiency of the samples 1 and 2 was increased by 2%-3%, and the samples 3 and 4 by about 5%. However, the difference was that for the samples 1 and 2, the pump efficiency was enhanced only during the effective working flow range (40-60 m3/h), while the pump efficiency of the samples 3 and 4 was increased in all the flow range from 0-60 m3/h. Above experimental results indicated that the efficiency enhancement effect of the pump mimicking from dolphin skin was obvious. According to the structure of Model 1 and 2, 2 experimental samples were designed and prepared in the flow visualization test, which was performed at the flow speed of 5 cm/s and water temperature of 20℃. The experimental results showed that the distance between wake attachment point and tail for Model 2 was shorter than that for Model 1, which indicated that the negative pressure of Model 2 was lower than that of Model 1. That was to say, the pressure drag of Model 2 was smaller than that of Model 1. In addition, during the experiment, the surface elastic deformation of Model 2 produced by the flow pressure was clearly observed. Furthermore, it was found that the wake vortex spacing of Model 2 was shorter than that of Model 1, which indicated that the wake vortex of Model 1 was generated frequently, and theenergy dissipation was higher than that of Model 2. The drag reduction effect of Model 2 was better than that of Model 1. Therefore, the pump efficiency enhancement effect of Model 2 is more effective than Model 1, that is to say, the bionic functional surface mimicking from dolphin skin structure is more effective to improve pump efficiency. The reasons to pump efficiency improvement are that the elastic deformation of surface material which is coupling with the bionic structure together can control fluid medium effectively, inhibit the spread and development of fluid medium disturbance, and reduce the vortex generation density and speed. So, the dissipation of energy is reduced and the drag reduction is achieved.

关键词

/仿生/模型/流动显示/减阻

Key words

pumps/bionics/models/flow visualization/drag reduction

分类

机械制造

引用本文复制引用

商延赓,金娥,可庆朋,韩亚民,高志桦,田丽梅..仿海豚皮肤结构的功能表面提高离心泵效率[J].农业工程学报,2016,34(7):72-78,7.

基金项目

国家自然科学基金面上项目资助项目(51475203);吉林省科技创新与科技成果转化项目(20140307030GX);长春市重大科技攻关专项资助项目 ()

农业工程学报

OA北大核心CSCDCSTPCD

1002-6819

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