Simulation and Optimization on Outlet Velocity of Industrial Plant Air Supply Cylinder

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Abstract:

By using numerical simulation method,the three-dimensional flow field of air supply cylinder using for displacement ventilation in industrial plant is analyzed. The internal structure, effective wind sent area and the shape of wind outlet small hole which affected the air outlet wind speed of air supply cylinder are researched. While compared with the simulated and measured result of the outlet velocity of the wind outlet small hole, the best feature parameters of wind speed in air supply cylinder has been gained. The result shows that: by changing the internal structure and decreasing the effective air supply area of the air supply cylinder, the wind speed from the air-outlet on the small hole can be more reasonably distributed; although by increasing the effective air supply area and changing the shape of outlet hole on air supply cylinder will make the air outlet be more effectively distributed, its value is unreasonable.

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Periodical:

Advanced Materials Research (Volumes 732-733)

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552-557

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August 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Guo cong. Study on a new type of displacement ventilation mechanism model and applicability evaluation. Xi'an University of Architecture and Technology,2010, May

Google Scholar

[2] Swenson, A.G.L. Nordic experience of displacement ventilation systems. ASHRAE Transactions 1989.95(2).1013-1017.

Google Scholar

[3] Elisabeth Mundt. Displacement ventilation systems-Convection flows and Temperature gradients. Building and Environment. 1995.Vol.30, No.I,pp.129-133.

DOI: 10.1016/0360-1323(94)e0002-9

Google Scholar

[4] Yuan X,Chen Q,Glicksman L.R. A Critical Review of Displacement Ventilation. ASHRAE Transaction, 1998,104(IA): 78-90

Google Scholar

[5] Hee-Jin Park, Dale Holland.The effect of lacation of a convective heat source on displacement ventilation: CFD study.Energy and Buildings, 2001, Vol.36:883-889

DOI: 10.1016/s0360-1323(01)00014-2

Google Scholar

[6] Wang Xiaotong. Numerical simulation of displacement ventilation with many pollution sources. Xi'an University of Architecture and Technology, 2003.

Google Scholar

[7] Ma Guobin. Displacement ventilation air distribution and its influence factor analysis research. Building Energy & Environment,2001, (3): 5-8.

Google Scholar

[8] Ma Guobin. Heat source distribution on the influence of displacement ventilation airflow organization. Clean technology and air conditioning,2005, (3): 21-24

Google Scholar

[9] Wu Xuan. Multiple heat source of displacement ventilation temperature distribution and its influencing factors. Energy & Environment, 2007, 26 (2): 1-5.

Google Scholar

[10] Chen Ke. Displacement ventilation effect of suspended particle distribution of the numerical simulation. Hunan university,2005.

Google Scholar

[11] Ma Xiangxue. Study on optimization design of displacement ventilation system of welding plant. Hunan university of technology,2012.

Google Scholar