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Computational study of fluid-borne noise in vertical inline pump
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作者 CHRISTOPHER Stephen YUAN Shouqi +1 位作者 PEI Ji CHENG Xing 《排灌机械工程学报》 EI CSCD 北大核心 2019年第2期93-99,共7页
The objective of present work is to find out the sources of fluid-borne noise in vertical inline pump for various flow rates. The three-dimensional unsteady Reynolds Average Navier Stokes equation was solved using com... The objective of present work is to find out the sources of fluid-borne noise in vertical inline pump for various flow rates. The three-dimensional unsteady Reynolds Average Navier Stokes equation was solved using computational fluid dynamics code to predict the acoustic distribution. The pump chosen for study was of low specific speed and the experimental performance characteristic was very well matched with computational head developed. PROUDMAN sound power contour analysis showed the critical zone of noise in inlet pipe,impeller,and volute. Based on this,the variations of acoustic power were depicted over the cross section of inlet pipe,along the mean streamline of inlet pipe,as well along the volute circumference. The result concludes that the predominant flow noise is at tongue region and followed by noise generated due to turbulence in inlet pipe which occurs by the sudden variation in flow passage as well it depends on the operating condition of pump. The frequency analysis gives a glimpse of understanding about the broadband noise distribution due to flow phenomenon over a frequency range. 展开更多
关键词 VERTICAL inline PUMP fluid-borne noise return flow INLET pipe PROUDMAN
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Digital switched hydraulics 被引量:12
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作者 Min PAN Andrew PLUMMER 《Frontiers of Mechanical Engineering》 SCIE CSCD 2018年第2期225-231,共7页
This paper reviews recent developments in digital switched hydraulics particularly the switched inertance hydraulic systems (SIHSs). The performance of SIHSs is presented in brief with a discussion of several possib... This paper reviews recent developments in digital switched hydraulics particularly the switched inertance hydraulic systems (SIHSs). The performance of SIHSs is presented in brief with a discussion of several possible configurations and control strategies. The soft switching technology and high-speed switching valve design techniques are discussed. Challenges and recommendations are given based on the current research achievements. 展开更多
关键词 digital hydraulics switched inertance hydraulic systems energy efficiency high-speed switching valve fluid-borne noise
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