减少汽车尾气因制动能量回收而产生的毒性

O. Polivaev, A. Larionov, Dmitry B. Bolotov
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摘要

背景:近年来,俄罗斯联邦的车辆数量显著增加,这导致向大气中排放的有毒气体大大增加。机动车辆排放的有毒气体所占的比例从65%到70%不等。为了减少有毒气体排放到大气中,电动汽车已经被引入,但它们有许多缺点。充电前的行驶里程有限,而且电池价格昂贵。此外,将氢作为汽车燃料的工作也在加速进行。然而,氢燃料储存的问题还没有解决。与此同时,二手汽车车队继续污染着大气。目的:研究用于降低UAZ汽车尾气中一氧化碳含量的制动能量回收器。方法:研制了一种气液制动回收器组合装置,并将其安装在无人驾驶汽车(RF Pat)上。不,2193977)。对照研究按照GOST 33670-2015和GOST 52033-2003进行。结果:对比研究结果表明,该车在高速行驶1825 m/s时CO排放量最小,低速行驶时CO排放量显著增加。由于额外的动力传输到驱动轮,恢复器消除了这一缺点。结论。当汽车在城市循环中启动时,在汽车加速增加的同时,有最小的CO排放,使加速时间和距离减少了3035%。装有调压器的汽车每100公里平均耗油量为15升,量产车每100公里耗油量为17.5升。由于采用了回热器,CO排放量减少了16%。
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Reduction of vehicle exhaust gas toxicity due to brake energy recovery
BACKGROUND: In recent years, fleet of vehicles in the Russian Federation is on a significant increase, that leads to considerably amplified emissions of toxic gases into the atmosphere. The share of toxic gas emissions from motor vehicles ranges from 65 to 70%. In order to reduce the toxic gas emissions into the atmosphere, electric vehicles have been introduced, but they have a number of disadvantages. These are a limited mileage before recharging and expensive batteries. Also, works on the use of hydrogen as a fuel for cars are conducted at an accelerated pace. However, the issue of a hydrogen fuel storage has not yet been worked out. At the same time, the used fleet of vehicles continues to poison the atmosphere. AIMS: Studying the braking energy recuperator for decreasing carbonic oxide CO in exhaust gases of the UAZ car. METHODS: The construction of a combined unit with a gas-hydraulic braking recuperator was developed, which is installed on a UAZ vehicle (RF Pat. No. 2193977). Comparative studies were carried out in accordance with GOST 33670-2015 and GOST 52033-2003. RESULTS: Results of comparative studies of the car showed that a minimum of CO emissions is observed in high gear, at a speed of 1825 m/s, and CO emissions significantly increase in lower gears. The recuperator eliminates this drawback due to the additional power transmission to the driving wheels. CONCLUSION. When a car starts in the urban cycle, there is a minimum of CO emissions with a recuperator, at the same time the car acceleration increases, that reduces the acceleration time and the distance by 3035%. A car with a recuperator on average consumed gasoline up to 15 l per 100 km, and this parameter of the production car was up to 17,5 l per 100 km of track. Due to the recuperator, CO emissions are reduced by 16%.
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