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Simulation and Experimental Analysis of Vortex Tube Using Steel Material

Simulation and Experimental Analysis of Vortex Tube Using Steel Material
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摘要 Experimental and computational fluid dynamics (CFD) are investigated through the vortex tube system. The benefit of vortex tube is a counter flow type tube, which has further designed and fabricated for investigation. The whole set up is consisting of a simple device that can separate a single stream of compressed air into two streams;one is at high temperature and the other is lower temperature following an inlet gas stream. The advantages of this tube are their compactness, safety, and low equipment cost mainly used in cooling and heating applications. This study addressed three-dimensional flows;the domain is using computational fluid dynamics (CFD) method and experimental approach to optimize the direction of RHVT. Through the CFD analysis, the best cold end diameter (dc), number of nozzles, and the best parameters for obtaining the highest hot gas temperature and lowest cold gas temperature were obtained and verified by experimental procedures. Experimental and computational fluid dynamics (CFD) are investigated through the vortex tube system. The benefit of vortex tube is a counter flow type tube, which has further designed and fabricated for investigation. The whole set up is consisting of a simple device that can separate a single stream of compressed air into two streams;one is at high temperature and the other is lower temperature following an inlet gas stream. The advantages of this tube are their compactness, safety, and low equipment cost mainly used in cooling and heating applications. This study addressed three-dimensional flows;the domain is using computational fluid dynamics (CFD) method and experimental approach to optimize the direction of RHVT. Through the CFD analysis, the best cold end diameter (dc), number of nozzles, and the best parameters for obtaining the highest hot gas temperature and lowest cold gas temperature were obtained and verified by experimental procedures.
作者 Muhammad Bilal Yaolong Chen Jun Zha Naveed Ullah Muhammad Bilal;Yaolong Chen;Jun Zha;Naveed Ullah(School of Mechanical Engineering, Xi’an Jiaotong University, Xi’an, China;State Key Laboratory for Manufacturing System Engineering, Xi’an Jiaotong University, Xi’an, China)
出处 《Open Journal of Fluid Dynamics》 2020年第3期151-163,共13页 流体动力学(英文)
关键词 Ranque-Hilsch Vortex Tube Design Analysis & Fabrication Experimental of Vortex Tube Steel Material Ranque-Hilsch Vortex Tube Design Analysis & Fabrication Experimental of Vortex Tube Steel Material
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