Numerical and experiment study on ventilation performance of the equipment compartment of Alpine high-speed train
Artikel i vetenskaplig tidskrift, 2023

Alpine High-Speed Train serves on the Lanzhou-Urumqi Line in northwest China, where the terrain is mainly the Gobi Desert. To adapt to this complex environment, the independent-air duct is mainly used for the electrical facilities inside the equipment compartment to prevent the spread of sand particles. This isolated air duct makes ventilation characteristics of the equipment susceptible to the external environment. For this reason, this work aims to clarify and investigate the ventilation characteristic of electrical facilities. A two-step simulation method using IDDES (Improved Delayed Detached Eddy Simulation) and a real-vehicle tracking test using the T-typed pitot tubes were conducted. In the simulation, it is found that the ventilation performance can be influenced by the location of the equipment compartment, facilities and the fan mounted inside. By comparing the results of the test and simulation, they share the same characteristic that the air outlet volume of the converter near the head car is being promoted while it near the tail car is being inhibited. The maximum deviation ratio between the test and simulation is 9%. Therefore, the measurement method in this study is relatively reliable.

ventilation performance

equipment compartment

Alpine High-Speed Train

independent air duct

Författare

Yitong Wu

Central South University

National & Local Joint Engineering Research Center of Safety Technology for Rail Vehicle

Wei Zhou

Central South University

National & Local Joint Engineering Research Center of Safety Technology for Rail Vehicle

Xifeng Liang

Central South University

National & Local Joint Engineering Research Center of Safety Technology for Rail Vehicle

Dawei Chen

CRRC Qingdao Sifang

Xinchao Su

National & Local Joint Engineering Research Center of Safety Technology for Rail Vehicle

Central South University

Xiao Bai Li

National & Local Joint Engineering Research Center of Safety Technology for Rail Vehicle

Central South University

Fan Wu

Central South University

National & Local Joint Engineering Research Center of Safety Technology for Rail Vehicle

Sinisa Krajnovic

Chalmers, Mekanik och maritima vetenskaper

Engineering Applications of Computational Fluid Mechanics

1994-2060 (ISSN) 1997-003X (eISSN)

Vol. 17 1 2252514

Ämneskategorier

Strömningsmekanik och akustik

DOI

10.1080/19942060.2023.2252514

Mer information

Senast uppdaterat

2023-09-12