Application of heterogeneous blading systems is the way for improving efficiency of centrifugal energy pumps
- 作者: Pochylý F.1, Haluza M.1, Fialová S.1, Dobšáková L.1, Volkov A.V.2, Parygin A.G.2, Naumov A.V.2, Vikhlyantsev A.A.2, Druzhinin A.A.2
-
隶属关系:
- Brno University of Technology (BUT)
- Moscow Power Engineering Institute
- 期: 卷 64, 编号 11 (2017)
- 页面: 794-801
- 栏目: Steam Turbine, Gas Turbine, Steam-Gas Plants and Accessory Equipment
- URL: https://bakhtiniada.ru/0040-6015/article/view/172851
- DOI: https://doi.org/10.1134/S0040601517110088
- ID: 172851
如何引用文章
详细
The results of independent research implemented by the teams of authors representing the Brno University of technology (Czech Republic) and Moscow Power Engineering Institute National Research University (Russia) are presented and compared. The possibilities for improving the energy efficiency of slow-speed centrifugal pumps (with a specific speed coefficient ns < 80) widely used in power engineering—in thermal power stations, in heat electric-power stations, in nuclear power plants, and in boiler rooms—were investigated. These are supply pumps, condensate pumps, precharge pumps, etc. The pumps with such values of ns are widely used in some technological cycles of oil-and-gas and chemical industries too. The research was focused on achieving the shape of the pump efficiency characteristics providing a significant extension of its effective working zone and increasing its integrated efficiency. The results were obtained based on new approaches to the formation of a blading system of an impeller of a slow-speed centrifugal pump different from the traditional blading system. The analytical dependences illustrating the influence of individual geometry of a blading system on the efficiency were presented. The possibilities of purposeful changing of its structure were demonstrated. It was experimentally confirmed that use of the innovative blading system makes it possible to increase the pump efficiency by 1–4% (in the experiments for the pumps with ns = 33 and 55) and to extend its efficient working zone approximately by 15–20% (in the experiment for the pumps with ns = 33 and 66). The latter is especially important for the supply pumps of NPP power units. The experimental results for all investigated pumps are presented in comparison with the characteristics of the efficiency provided by the blading systems designed by traditional methods.
作者简介
F. Pochylý
Brno University of Technology (BUT)
Email: volkovav@mpei.ru
捷克共和国, Brno, 616 69
M. Haluza
Brno University of Technology (BUT)
Email: volkovav@mpei.ru
捷克共和国, Brno, 616 69
S. Fialová
Brno University of Technology (BUT)
Email: volkovav@mpei.ru
捷克共和国, Brno, 616 69
L. Dobšáková
Brno University of Technology (BUT)
Email: volkovav@mpei.ru
捷克共和国, Brno, 616 69
A. Volkov
Moscow Power Engineering Institute
编辑信件的主要联系方式.
Email: volkovav@mpei.ru
俄罗斯联邦, Moscow, 111250
A. Parygin
Moscow Power Engineering Institute
Email: volkovav@mpei.ru
俄罗斯联邦, Moscow, 111250
A. Naumov
Moscow Power Engineering Institute
Email: volkovav@mpei.ru
俄罗斯联邦, Moscow, 111250
A. Vikhlyantsev
Moscow Power Engineering Institute
Email: volkovav@mpei.ru
俄罗斯联邦, Moscow, 111250
A. Druzhinin
Moscow Power Engineering Institute
Email: volkovav@mpei.ru
俄罗斯联邦, Moscow, 111250
补充文件
