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Effects of Cross Level Air Interaction within Multilevel Underground Carparks on Indoor Air Quality

机译:多级地下停车场内交叉水平空气相互作用对室内空气质量的影响

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Ventilation for underground carparks is critical to indoor air quality (IAQ) due to carbon monoxide (CO) emissions from cars. The IAQ within a multi-level underground carpark of a shopping mall has been investigated using computational fluid dynamics (CFD) model based on ANSYS-FLUENT (18.1) software. The effects of car engines types, porosity of supply and exhaust air louvers and ventilation flow rates on IAQ were examined. A mesh sensitivity study was conducted and the CFD model was validated against the fully mixed mathematical formulations of IAQ with a maximum difference in values of 1.5 ppm and an error of 3.4%. The results showed that the ventilation system must be operated at ACH value of more than 2.7 in order to meet the required CO concentration of 50 ppm within the carpark and should be based on running cars within each level rather than the parking capacity of each level. Porosity of louvers affected air flow distribution between parking levels and led to higher dilution of CO. Therefore, modelling a multilevel underground carpark requires closer attention to cross level interaction across Ramps which could affect the CO concentration within a given level.
机译:地下停车场通风对室内空气质量(IAQ)至关重要的汽车,由于汽车一氧化碳(CO)排放量。使用基于ANSYS-FLUENT(18.1)软件的计算流体动力学(CFD)模型来研究购物商城的多级地下停车场内的IAQ。检查了汽车发动机类型,供应孔隙的效果和IAQ对IAQ的通风流速。进行网眼敏感性研究,并验证了CFD模型的IAQ的完全混合数学制剂,最大差值为1.5ppm,误差为3.4%。结果表明,通风系统必须以超过2.7的ACH值操作,以满足停车场内所需的CO浓度为50 ppm,并应基于每个级别内的运行车而不是每个级别的停车能力。百叶窗的孔隙率影响了停车水平之间的空气流量分布,并导致了更高的CO稀释。因此,建模多级地下停车场需要更接近斜坡的交叉水平相互作用,这可能影响给定水平内的CO浓度。

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