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Analysis and optimization of ventilation systems for an underground transport interchange building under regular and emergency scenarios

机译:常规和紧急情况下地下交通交换建筑通风系统的分析和优化

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The work and conclusions gained from the analysis of five new underground interchange buildings ongoing in Madrid, Spain, is presented. An additional study was performed for a typical two-level interchange building, and the methodology and results are presented in this paper. First, different ventilation and air conditioning strategies have been analyzed. The main goal is to find the most efficient design in order to maintain pollutants concentration and temperatures below the designed values, at minimum investment and operation costs. Different strategies have been modelled and compared using a Computational Fluid Dynamics (CFD) code, taking into account the buses circulation and the different pollution and heat sources. The final solution developed is based on a physical separation between the island area and the dock area. Conclusions on the efficiency of the different design strategies and possible pitfalls are presented. Secondly, different fire scenarios are analyzed. The main goal is to check whether the fire fighting measures planned, such as mechanical ventilation and a curtains system to define smoke sectors are able to cope with a fire emergency situation. A model for the bus fire has been developed, including heat release and smoke production. The main results presented are temperature fields, visibility and smoke concentration.
机译:介绍了通过分析西班牙马德里正在进行的五座新地下互换建筑物获得的工作和结论。对典型的两层互换建筑进行了另外的研究,本文介绍了方法和结果。首先,已经分析了不同的通风和空调策略。主要目标是找到最有效的设计,以最小的投资和运营成本将污染物的浓度和温度保持在设计值以下。考虑到公交车的循环以及不同的污染和热源,已经使用计算流体动力学(CFD)代码对不同的策略进行了建模和比较。最终的解决方案基于岛区与码头区之间的物理隔离。提出了关于不同设计策略的效率和可能存在的陷阱的结论。其次,分析了不同的火灾场景。主要目标是检查计划的消防措施(例如机械通风和定义烟气的窗帘系统)是否能够应对火灾紧急情况。已经开发出一种用于公交车着火的模型,包括放热和烟雾产生。给出的主要结果是温度场,能见度和烟雾浓度。

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