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지하역사 승강장 및 대합실 평상시 비상시 급·배기 환기 Large Eddy Simulation
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  • 지하역사 승강장 및 대합실 평상시 비상시 급·배기 환기 Large Eddy Simulation
저자명
장용준,류지민,박덕신,Jang. Yong-Jun,Ryu. Ji-Min,Park. Duck-Shin
간행물명
한국전산유체공학회지
권/호정보
2013년|18권 3호|pp.72-78 (7 pages)
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한국전산유체공학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

The turbulent flow behavior of air supply and exhaustion in the Shin-gum-ho subway station is analyzed for ordinary and emergency state. The depth of Shin-gum-ho station is 43.6m which consists of the island-type platform(8th floor in underground) and a two-story lobby (first & second floor in underground). An emergency stairway connects between the platform and the lobby. Ventilation operation mode for ordinary state is set up as a combination of air supply and exhaustion in the lobby and platform, while for emergency state it is set up as a full air supply in the lobby and a full exhaustion in the platform. The entire station is covered for simulation. The ventilation diffusers are modeled as 95 square shapes of $0.6m{ imes}0.6m$ in the lobby and as 222 square shapes of $0.6m{ imes}0.6m$ and 4 rectangular shapes of $1.2m{ imes}0.8m$ in the platform. The total of 7.5million grids are generated and whole domain is divided to 22 blocks for MPI efficiency of calculation. Large eddy simulation(LES) is applied to solve the momentum equation and Smagorinsky model($C_s$=0.2) is used as SGS(subgrid scale) model. The time-averaged velocity fields are compared to experimental data and show a good agreement with it.