土木工程毕业设计外文翻译---CFD模拟和地铁站台的优化通风(节选)
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1、PDF外文:http:/ 第 1 页 CFD simulation and optimization of the ventila
2、tion for subway side-platform Feng-Dong Yuan *, Shi-Jun You Abstract To obtain the velocity and temperature field of subway station and the optimized ventilation mode of subway side-platform station, this paper takes the
3、 evaluation and optimization of the ventilation for subway side-platform station as main line, builds three dimensional models of original and optimization design of the existed and rebuilt station. And using the two-equation turbulence model as its physics model, the thesis makes computational flui
4、d dynamics (CFD) simulation to subway side-platform station with the boundary conditions collected for simulation computation through field measurement. It is found that the two-equation turbulence model can be used to predict velocity field and temperature field at the station under some reasonable
5、 presumptions in the investigation and study. At last, an optimization ventilation mode of subway side-platform station was put forward. 1. Introduction Computational fluid dynamics (CFD) software is commonly used to simulate fluid flows, particularly in complex environments (Chow and L
6、i, 1999; Zhang et al., 2006; Moureh and Flick, 2003). CFD is capable of simulating a wide variety of fluid problems (Gan and Riffat, 2004; Somarathne et al., 2005; Papakonstantinou et al., 2000; Karimipanah and Awbi, 2002). CFD models can be realistically modeled without investing in more costly exp
7、erimental method (Betta et al., 2004; Allocca et al., 2003; Moureh and Flick, 2003). So CFD is now a popular design tool for engineers from different disciplines for pursuing an optimum design due to the high cost, complexity, and limited information obtained from experimental methods (Li and Chow,
8、2003; Vardy et al., 2003; Katolidoy and Jicha, 2003). Tunnel ventilation system design can be developed in depth from the predictions of various parameters, such as vehicle emission dispersion, visibility, air velocity, etc. (Li and Chow, 2003; Yau et al., 2003; Gehrke et al., 2003). &
9、nbsp; 外文资料翻译
10、 第 2 页 Earlier CFD simulations of tunnel ventilation system mainly focus on emergency situation as fire co
11、ndition (Modic, 2003; Carvel et al., 2001; Casale, 2003). Many scientists and research workers (Waterson and Lavedrine, 2003; Sigl and Rieker, 2000; Gao et al., 2004; Tajadura et al., 2006) have done much work on this. This paper studied the performance of CFD simulation on subway environment contro
12、l system which has not been studied by other paper or research report. It is essential to calculate and simulate the different designs before the construction begins, since the investment in subways construction is huge and the subway should run up for a few decade years. The ventilation of subway i
13、s crucial that the passengers should have fresh and high quality air (Lowndes et al., 2004; Luo and Roux, 2004). Then if emergency occurred that the well-designed ventilation system can save many peoples life and belongings (Chow and Li, 1999; Modic, 2003; Carvel et al., 2001). The characteristics o
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- 土木工程 毕业设计 外文 翻译 cfd 模拟 摹拟 以及 地铁 站台 优化 通风 透风
