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Challenges and potential solutions for reducing climate control loads in conventional and hybrid electric vehicles

机译:降低传统和混合动力电动汽车气候控制负荷的挑战和潜在解决方案

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The National Renewable Energy Laboratory, a U.S. Department of Energy national laboratory, is collaborating with U.S. automotive manufacturers to develop innovative techniques to reduce national fuel consumption and vehicle tailpipe emissions by reducing vehicle climate control loads. A new U.S. emissions test, the Supplemental Federal Test Procedure (SFTP), will soon begin measuring tailpipe emissions with the air conditioning system operating. Modeled results show that emissions of oxides of nitrogen (NO_X) and carbon monoxide (CO) more than double during the air conditioning part of the SFTP. Reducing the transmittance of the glazing can have a greater impact on the cabin soak temperature than ventilating the vehicle during a hot soak. Reducing the amount of outside air can decrease cooling and heating loads but requires that the recirculated air be cleaned. We discuss a photocatalytic oxidation air-cleaning process for removing volatile organic compounds and bioareosols. We conclude with an example of modeling the thermal comfort of the occupants. An auxiliary load increase of only 400 Watts (W) results in a 0.4 km/L (1 mpg) decrease for a conventional 11.9-L/100-km (28-mpg) vehicle. If every vehicle in the United States were to save only 0.4 km/L (1 mpg), $4 billion (U.S. dollars) would be saved annually in gasoline and oil costs.
机译:美国能源部国家实验室国家可再生能源实验室(National Renewable Energy Laboratory)正在与美国汽车制造商合作,开发创新技术,以通过降低汽车气候控制负荷来降低国家燃油消耗和汽车尾气排放。一项新的美国排放测试,即补充联邦测试程序(SFTP),将很快在空调系统运行时开始测量排气管的排放。建模结果显示,在SFTP的空调部分,氮氧化物(NO_X)和一氧化碳(CO)的排放量增加了一倍以上。与在热浸期间使车辆通风相比,降低玻璃的透射率可能会对车厢的浸入温度产生更大的影响。减少外部空气量可以减少冷却和加热负荷,但需要清洁再循环空气。我们讨论了一种光催化氧化空气净化工艺,用于去除挥发性有机化合物和生物气溶胶。我们以对乘员的热舒适性进行建模为例进行说明。对于传统的11.9-L / 100 km(28-mpg)车辆,辅助负载仅增加400 W(W)导致降低0.4 km / L(1 mpg)。如果美国每辆汽车仅节省0.4 km / L(1 mpg),则每年可节省40亿美元(美元)的汽油和石油成本。

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