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Analysis And Simulation Of 'low-cost' Strategies To Reduce Fuel Consumption And Emissions In Conventional Gasoline Light-duty Vehicles

机译:降低常规汽油轻型车辆燃油消耗和排放的“低成本”策略的分析和仿真

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This paper focuses on technology analysis and simulation to mitigate the transportation impacts on energy and environment, with the major goal of estimating the technology contribution towards the 125 g/km CO_2 target in Europe. The authors analyse cheap- and low-complexity measures, while keeping the same power/weight ratio, for several vehicle categories. The measures are: regenerative braking; fuel cut while coasting; engine stop/start; and engine downsizing and turbocharging. Simulation of these mechanisms for several road vehicles categories and driving cycles, allow us to conclude that with the last three mechanisms fuel consumption and CO_2 emissions can be reduced by 15-49%, compared to the original vehicle. HC, CO and NO_x emissions can be reduced by similar percentages. Regenerative braking is valuable only if the additional weight is compensated by diminishing the body weight. The simulations confirm that the use of "slightly" modified conventional vehicles can reduce fuel consumption and carbon dioxide emissions, without the complexity and high cost of full-hybrid powertrains.
机译:本文着重于技术分析和模拟,以减轻运输对能源和环境的影响,其主要目标是估算技术对欧洲实现125 g / km CO_2目标的贡献。作者分析了几种车型的廉价和低复杂性措施,同时保持了相同的功率/重量比。这些措施是:再生制动;滑行时燃油减少;发动机停止/启动;以及发动机的小型化和涡轮增压。通过对几种公路车辆类别和行驶周期对这些机制的仿真,我们可以得出结论,与原始车辆相比,使用后三种机制可以将燃料消耗和CO_2排放量降低15-49%。 HC,CO和NO_x排放量可以减少相似的百分比。仅当通过减轻体重来补偿额外的重量时,再生制动才有价值。仿真结果证实,使用“稍加修改”的常规车辆可以减少燃油消耗和二氧化碳排放,而不会带来全混合动力总成的复杂性和高成本。

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