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contributor authorXia, Chao
contributor authorShan, Xizhuang
contributor authorYang, Zhigang
date accessioned2017-11-25T07:16:24Z
date available2017-11-25T07:16:24Z
date copyright2017/16/3
date issued2017
identifier issn0098-2202
identifier otherfe_139_05_051101.pdf
identifier urihttp://138.201.223.254:8080/yetl1/handle/yetl/4233996
description abstractThe influence of ground effect on the wake of a high-speed train (HST) is investigated by an improved delayed detached-eddy simulation. Aerodynamic forces, the time-averaged and instantaneous flow structure of the wake are explored for both the stationary ground and the moving ground. It shows that the lift force of the trailing car is overestimated, and the fluctuation of the lift and side force is much greater under the stationary ground, especially for the side force. The coexistence of multiscale vortex structures can be observed in the wake along with vortex stretching and pairing. Furthermore, the out-of-phase vortex shedding and oscillation of the longitudinal vortex pair in the wake are identified for both ground configurations. However, the dominant Strouhal number of the vortex shedding for the stationary and moving ground is 0.196 and 0.111, respectively, due to the different vorticity accumulation beneath the train. A conceptual model is proposed to interpret the mechanism of the interaction between the longitudinal vortex pair and the ground. Under the stationary ground, the vortex pair embedded in a turbulent boundary layer causes more rapid diffusion of the vorticity, leading to more intensive oscillation of the longitudinal vortex pair.
publisherThe American Society of Mechanical Engineers (ASME)
titleDetached-Eddy Simulation of Ground Effect on the Wake of a High-Speed Train
typeJournal Paper
journal volume139
journal issue5
journal titleJournal of Fluids Engineering
identifier doi10.1115/1.4035804
journal fristpage51101
journal lastpage051101-12
treeJournal of Fluids Engineering:;2017:;volume( 139 ):;issue: 005
contenttypeFulltext


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