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Labview控制技术在船舶离心泵状态监测系统的应用

Application of Labview control technology in ship centrifugal pump condition monitoring system
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摘要 在现代船舶控制领域,一般需要依赖强大的离心泵系统,为船舶的各项动力提供支持,因此,在设计船用离心泵时,必须对其状态进行实时监测,才能保证船舶各项功能的正常运行。本文借助labview技术,能够在离心泵工作时,对该设备的各种受力情况和形变进行模拟,使离心泵的各项性能满足要求。同时,还重点提高动力的传输效率。文章主要介绍labview技术的工作原理,并对离心泵的组成参数进行重点的优化,从某种程度上说,就是对离心泵中的叶轮进行优化,最后的仿真结果表明优化后的离心泵具有很高的工作效率,满足系统指标要求。 In the field of modern ship control, it is generally necessary to rely on a powerful centrifugal pump system to support the power of the ship. Therefore, when designing a marine centrifugal pump, it is necessary to monitor its status in real time to ensure the functions of the ship. normal operation. With the help of labview technology, in the design of centrifugal pump, the equipment of the various forces, and deformation simulation, the performance of the centrifugal pump to meet the requirements. At the same time, also focus on improving the power transmission efficiency. This paper mainly introduces the working principle of labview technology, and optimizes the composition parameters of centrifugal pump. In some way, it is optimized for the impeller in centrifugal pump. The final simulation results show that the optimized centrifugal pump has High efficiency, meet the system requirements.
作者 刘帅
出处 《舰船科学技术》 北大核心 2017年第22期97-99,共3页 Ship Science and Technology
关键词 LABVIEW 离心泵 监测 labview centrifugal pump monitor
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  • 1陈锡辉.LABVIEW8.2基础教程.北京:清华大学出版社,2007.
  • 2LANGTHJEM M A,OLHOFF N.A numerical study of flow-induced noise in a two-dimensional centrifugal pump[J].Part Ⅰ:Hydrodynamics Journal of Fluids and Structures,2004(19):349-368.
  • 3CHOI J S,MCLAUGHLIN D K,THOMPSON D E.Experiments on the unsteady flow field and noise generation in a centrifugal pump impeller[J].Journal of Sound andVibration,2003,263:493-514.
  • 4SRIVASTAV O P,PANDU K R,GUPTA K.Effect of radial gap between impeller and diffuser on vibration and noise in a centrifugal pump[C] //Journal of the Institution of Engineers (India):Mechanical Engineering Division,2003:36-39.
  • 5WANG M,FREUND J B,LELE S K.Computational prediction of flow-generated sound[J].Annual Review of Fluid Mechanics,2005,38(1):483-512.
  • 6KATO C,YAMADE Y,WANG H,et al.Numerical prediction of sound generated from flows with a low Mach number[J].Computers and Fluids,2007,36(1):53-68.
  • 7JIANG Y Y,YOSHIMURA S,IMAI R,et al.Quanttative evaluation of flow-induced structural vibration and noise in turbomachinery by full-scale weakly coupled simulation[J].Journal of Fluids and Structures,2007,23(3):531-544.
  • 8JORGE P,JAVIER P,RAUL B,et al.A simple acoustic model to characterize the internal low frequency sound field in centrifugal pumps[J].Applied Acoustics,2011,72:59-64.
  • 9SERGEY T.Development and experimental validation of 3D acoustic-vortex numerical procedure for centrifugal pump noise prediction[C] //proceedings of ASME Fluids Engineering Division Summer Meeting,August 2-6,2009,Vail,Colorado,USA,2009:389-398.
  • 10TUCKER P G,LARDEAU S.Introduction:Applied large eddy simulation[J].Philosophical Transaction Royal Soc London Series A Mathematical Physical and Engineering Sciences,2009,367(1899):2809-2818.

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