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Comparing real-world fuel consumption for diesel- and hydrogen-fueled transit buses and implication for emissions

机译:比较现实世界中柴油和氢燃料公交车的燃料消耗以及对排放的影响

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This paper explores the influence of key factors such as speed, acceleration, and road grade on fuel consumption for diesel and hydrogen fuel cell buses under real-world operating conditions. A Vehicle Specific Power-based approach is used for modeling fuel consumption for both types of buses. To evaluate the robustness of the modeling approach, Vehicle Specific Power-based modal average fuel consumption rates are compared for diesel buses in the US and Portugal, and for the Portuguese diesel and hydrogen fuel cell buses that operate on the same route. For diesel buses there is similar intra-vehicle variability in fuel consumption using Vehicle Specific Power modes. For the fuel cell bus, the hydrogen fuel consumption rate was found to be less sensitive to Vehicle Specific Power variations and had smaller variability compared to diesel buses. Relative errors between trip fuel consumption estimates and actual fuel use, based upon predictions for a portion of real-world activity data that were not used to calibrate the models, were generally under 10% for all observations. The Vehicle Specific Power-based modeling approach is recommended for further applications as additional data become available. Emission changes based upon substituting hydrogen versus diesel buses are evaluated.
机译:本文探讨了在实际操作条件下,速度,加速度和道路坡度等关键因素对柴油和氢燃料电池公交车燃料消耗的影响。基于车辆特定功率的方法用于对两种类型的公交车的燃油消耗进行建模。为了评估建模方法的鲁棒性,比较了美国和葡萄牙的柴油公交车以及在相同路线上运行的葡萄牙柴油和氢燃料电池公交车的基于车辆特定功率的模式平均燃油消耗率。对于柴油公交车,使用“车辆特定功率”模式在燃油消耗方面存在类似的车内变化。对于燃料电池客车,与柴油客车相比,发现氢燃料消耗率对车辆特定功率变化不那么敏感,并且变异性较小。基于对未用于校准模型的部分真实世界活动数据的预测,旅途燃油消耗估算与实际燃油使用之间的相对误差对于所有观察而言通常都在10%以下。随着更多数据的获得,建议将基于车辆特定功率的建模方法用于进一步的应用。评估了基于氢气替代柴油公交车的排放变化。

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