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Modeling of Fuel Consumption for Heavy-Duty Trucks and the Impact of Tire Rolling Resistance

机译:重型卡车燃料消耗的建模及轮胎滚动阻力的影响

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The cost of fuel for commercial trucks is second only to labor in the total vehicle operating costs. Therefore, technologies that reduce fuel consumption can have a significant impact on the bottom line for both trucking fleets and owner/operators. Quantifying the fuel savings associated with different technologies, however, is complicated by many factors, and short-term testing often cannot adequately quantify small changes in fuel consumption that, over time, can add up to substantial cost savings on a vehicle. For example, fuel economy gains of less than one percent may not be reliably measurable using fuel tests, and variable environmental and use factors can cast some doubt on the appropriateness of short-term testing. Nonetheless, with today's fuel prices, each percent improvement in fuel economy for heavy-duty trucks results in annual savings of about USD335 per vehicle in fuel costs, based on 100,000 miles (160,000 km) annual vehicle mileage, 6.5 mpg (36.2 L/100 km) fuel economy and a fuel price of USD2.20/gallon. It is therefore quite worthwhile to identify technologies that can provide even modest fuel savings and to quantify the gains. As an alternative to conducting fuel tests, fuel savings can be quantified through detailed simulation of a vehicle's performance using a physics-based model that incorporates performance maps of the drivetrain components and all other elements of the vehicle responsible for energy losses. This paper describes the development of a model for heavy-duty trucks using AVL-CRUISE software. This model can be used to predict fuel consumption when a vehicle is operated following any specified driving cycle, and the fuel savings potential of specific technologies can be evaluated when the energy loss characteristics of the technology are available. Results of testing are presented that were used to validate the model results. Instantaneous fuel flow measurements during various driving cycles show excellent agreement with the model predictions. The effect of tire rolling resistance on vehicle fuel consumption was investigated using the model developed. Based on these results, fuel savings of 1.40 to 1.62 L/100 km can be expected per kg/T reduction in the average rolling resistance coefficient for this vehicle, depending on the cycle evaluated. This equates to fuel savings of 600 to 690 gallons of diesel for each 100,000 miles driven, times the reduction in the coefficient of rolling resistance expressed in kg/ton.
机译:商业卡车的燃料成本仅为总车辆运营成本的劳动力。因此,减少燃料消耗的技术可能对货车车队和所有者/运营商的底线产生显着影响。然而,量化与不同技术相关的燃料节省是许多因素的复杂性,并且短期测试通常不能充分量化燃料消耗的小变化,随着时间的推移,可以在车辆上积累大量成本节省。例如,使用燃料测试可能无法可靠地测量燃料经济性低于1%,可变的环境和使用因素可以对短期测试的适当性造成一些疑问。尽管如此,随着当今燃料价格,重型卡车的燃料经济性的每个百分比都会导致每辆车的每年节省约335美元,基于10万英里(160,000公里)年度车辆行驶里程,6.5 MPG(36.2 L / 100 KM)燃油经济性和燃油价格为2.20美元/加仑。因此,它非常值得识别可以提供甚至可以提供适度的燃料节省的技术并量化收益。作为进行燃料测试的替代方案,可以通过使用基于物理的模型详细模拟车辆的性能来量化燃料节省,该物理学的模型包括传动系统部件的性能图和负责能量损失的车辆的所有其他元件。本文介绍了使用AVL-Cruise软件的重型卡车模型的开发。当在任何指定的驾驶循环之后运行车辆时,该模型可用于预测燃料消耗,并且当可用技术的能量损耗特性时,可以评估特定技术的燃料节省电位。介绍了测试结果,用于验证模型结果。各种驾驶循环期间的瞬时燃料流量测量显示出与模型预测的良好协议。使用该模型开发研究了轮胎滚动阻力对车辆燃料消耗的影响。基于这些结果,根据评估的循环,每千克/ T降低,可以预期1.40至1.62升/ 100km的燃料节省1.40至1.62L / 100km,具体取决于该载体的平均滚动电阻系数。这相当于每10万英里的柴油节省600至690加仑的柴油,延长滚动阻力系数以kg /吨表示。

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