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Particle and Aerosol Research
Vol. 15, No. 1, March 2019, Pages 27-36
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ISSN : 1738-8716 (Print)
ISSN : 2287-8130 (Online)
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A Numerical Study on Air Distribution and Flow in the
Passenger Cabin of a High-Speed Electric Train
Hyon-Kook Myong1), Kyung-Hoon Yoo2) *) Jungho Hwang3)
1)Department of Mechanical Engineering, Kookmin University, Seoul 02707, Korer
2)Nanoscale Contamination Control Laboratory, Korea Institute of Industrial Technology(KITECH), Ansan-si 15588, Korea
3)Department of Mechanical Engineering, Yonsei University, Seoul 03722, Korea
*Corresponding author.
Tel.: +82-31-8040-6437, E-mail: khyoo@kitech.re.kr
Received 25 March 2019, Revised 29 March 2019, Accepted 29 March 2019, Available online 31 March 2019
http://dx.doi.org/10.11629/jpaar.2019.15.1.027
Abstracts
Numerical analysis has been conducted on three-dimensional airflow distribution in the passenger cabin of a high-speed electric train. The types of air distribution systems investigated in the present study were those of TGV and Shinkansen. The Reynolds-averaged Navier-Stokes equations governing the mass and momentum conservations of the airflow in the cabin were solved by using a finite volume method, which are coupled with the standard k-¥å turbulence model equations. Predicted velocity distributions were presented on several selected planes in the passenger cabin. The present three-dimensional simulations were found to show the overall features of the airflow in the passenger cabin fairly well. In particular, it was shown that the type of air distribution for Shinkansen was more suitable for a non-smoking cabin than that for TGV.
Keywords
Numerical Analysis, High-Speed Electric Train, Passenger Cabin, Air Distribution, Air Flow
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