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Modeling evaporative emissions from parked gasoline cars based on vehicle carbon canister experiments

机译:基于车辆碳罐实验的停放汽油汽车造型蒸发排放量

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A time-step model was constructed to estimate the amount of evaporative emissions from vehicular diurnal breathing loss (DBL) on the basis of fuel adsorption-desorption experiments for several carbon canisters attached to seven gasoline vehicles using a chassis dynamometer. Experimental results showed that the canister's total volatile organic compound (VOC) storage ability is proportional to the canister volume, and a canister's desorption ability strongly depends on the amount of VOC trapped in the canister and the air purge flow rate of each vehicle. These properties were formulated into equations by regression analysis and used with the material balance inside the canister to propose a model for estimating emissions after carbon canister breakthrough, which are a function of a vehicle's driving and parking frequency. The model was applied to DBL experimental results derived from our previous studies to confirm its validity. Better agreement between the model and the previous experimental results was obtained when appropriate parameters were set. The proposed model is expected to contribute to estimating the VOC emission inventory for gasoline vehicles. (C) 2019 Elsevier B.V. All rights reserved.
机译:构建时间步骤模型以估计车辆差呼吸损失(DBL)的蒸发排放量基于使用底盘测功机附着于七种汽油车辆的几种碳罐的燃料吸附 - 解吸试验。实验结果表明,罐的总挥发性有机化合物(VOC)储存能力与罐体积成比例,并且罐的解吸能力强烈取决于罐中捕获的VOC的量和每辆车的空气吹扫流速。通过回归分析将这些性质配制成方程,并与罐内的材料平衡一起使用,以提出碳罐突破后估算排放的模型,这是车辆的驾驶和停车频率的函数。该模型用于DBL实验结果源自我们以前的研究,以证实其有效性。在设定适当的参数时,可以获得模型和先前实验结果之间的更好的协议。建议的模型有助于估算汽油车辆的VOC排放库存。 (c)2019 Elsevier B.v.保留所有权利。

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