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Effect of Cabin Volume on Build-up of Cabin Carbon Dioxide Concentrations from Occupant Breathing in Automobiles

机译:机舱体积对机舱二氧化碳浓度从乘员呼吸施用的影响

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Recently the author (Mathur, 2017) had presented a model to predict cabin carbon dioxide concentrations as a function of time, number of occupants, vehicle speed, body leakage characteristics, occupant lung capacities and concentrations of the carbon dioxide coming out from occupant’s mouth, blower position and vehicle age. The developed model was validated by the author for mid-sized vehicles (vehicles from D-segment). The simulated data was within ±11.5% of the experimental data. In this paper the author has used the developed model to predict cabin CO_2 concentrations for vehicles from B, C & D segments. Or in other words, the effect of the cabin volume will be investigated on the rate of build-up of cabin CO_2 concentrations. Experimental tests were conducted on these vehicles and are compared to the simulated data. Detailed results have been presented in the paper. It has been found that the vehicles with the smallest interior volume has the largest and steepest rise of the cabin CO_2 concentrations in compared to larger volume vehicles.
机译:近日笔者(马图尔,2017)曾提出一个模型来预测机舱二氧化碳浓度与时间的函数,乘客,车辆速度,车身泄漏特性,乘员肺容量和浓度的二氧化碳从乘客的口中传出来的号码,鼓风机位置和车辆时代。由作者验证开发的模型,用于中型车辆(来自D段的车辆)。模拟数据在实验数据的±11.5%范围内。在本文中,作者使用了开发的模型来预测来自B,C&D段的车辆的机舱Co_2浓度。或者换句话说,将对舱CO_2浓度的堆积速率来研究机舱体积的效果。在这些车辆上进行实验测试,并与模拟数据进行比较。本文提出了详细的结果。已经发现,与较大的储备车辆相比,具有最小的内部容积的车辆具有最大,最陡峭的舱CO_2浓度。

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