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Journal of wind engineering and industrial aerodynamics, 2018-01, Vol.172, p.395-408
2018
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Autor(en) / Beteiligte
Titel
Comparative numerical analysis of the slipstream caused by single and double unit trains
Ist Teil von
  • Journal of wind engineering and industrial aerodynamics, 2018-01, Vol.172, p.395-408
Ort / Verlag
Elsevier Ltd
Erscheinungsjahr
2018
Quelle
ScienceDirect
Beschreibungen/Notizen
  • The use of double-unit trains is becoming a common means of increasing passenger capacity for a rail network. However, their expanded usage may create additional aerodynamic challenges. The present work obtains the characteristics of the slipstream caused by single and double unit trains using the detached eddy simulation (DES) method for 1/20th scaled models. The numerical results are verified by full-scale experiments. The slipstream velocities and pressures obtained by the two train models at different distances from the center of track (COT) and the top of rail (TOR) are compared. The coupling structure of the double-unit train model is found to produce a velocity peak that is much greater than that of the single-unit train model in the same position. At the area away from the COT and close to the TOR, the velocity of the far wake region is larger for the double-unit train model. The coupling structure also leads to a positive pressure change in the coupling region, and its value is comparable to or even much greater than that caused by the nose. It is considerable that the subsequent pressure criteria could take the positive pressure on the coupling region into account for the double-unit train. •The slipstream velocity and pressure changes induced by the single and double unit trains.•The velocity and pressure changes are quite various in different regions around the double-unit trains.•The influence scopes of the velocity and pressure changes caused by the coupling structure are different.•A possible consideration of the pressure criteria for the double-unit trains.
Sprache
Englisch
Identifikatoren
ISSN: 0167-6105
eISSN: 1872-8197
DOI: 10.1016/j.jweia.2017.11.022
Titel-ID: cdi_crossref_primary_10_1016_j_jweia_2017_11_022

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