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Improving Energy Efficiency of Heavy-Duty Vehicles: A Systemic Perspective and Some Case Studies

机译:系统分析和一些案例研究提高重型车辆的能源效率

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Today's advanced market economy relies in logistic operations that are both reliable and timely. Road transport is a major contributor to this daily logistics, but also a major consumer of fossil fuels, hence producing a lot of carbon emissions. Furthermore, most of the technologies recently introduced to cut down fuel use and emissions in passenger cars are not practical in heavy trucks running long-distances. This paper focuses on how to more systematically address the energy process and gives some case-examples of progress made in real-world HDVs. Several studies at VTT have been addressing energy use in HDVs. It has become evident that for real improvements in energy efficiency, the complete vehicle must be taken into consideration. We must have better understanding of the factors influencing the energy demand, and not just how to make engines more fuel efficient. For that purpose a break-down of energy use in a heavy truck-trailer combination has been made. The objective for this approach was to give proportions for the various contributors for the energy use, and be able to assess, what kind of progress in each field could be possible. Apart from the holistic and systemic approach, we need metrics to measure the energy consumption in such a way that the results reflect real-world situation as good as possible. Using a chassis dynamometer capable of taking a full-size vehicle and replicating its on-road driving operations has proven to be an excellent tool in terms of precision and repeatability of the results. Adding also road gradient (uphill/downhill) simulation further enhances the realism, and improves the accuracy how closely the duty-cycle is reflected in engine speed/load sequence compared to on-road driving. Eventually, this match is the measure for the success of the method. In case studies several areas of energy use has been addressed, and the potentials for savings in real-use has been determined. These include e.g., choice of tyres for optimum rolling losses without compromising safety and most recently aerodynamic improvements for the complete truck-trailer combination for reduced drag. The paper will portray the achievable energy savings identified in these studies. Test results demonstrate that energy efficiency of heavy trucks can be improved, but for a long-standing and substantial impact the complete design of the vehicle should be viewed from the energy efficiency perspective.
机译:当今先进的市场经济依赖可靠且及时的物流运作。公路运输是这种日常物流的主要贡献者,也是化石燃料的主要消耗者,因此产生大量的碳排放。此外,最近引入的减少乘用车燃料消耗和排放的大多数技术在长途行驶的重型卡车中并不实用。本文着重于如何更系统地解决能源过程,并提供了一些实例,以举例说明现实世界中的HDV取得的进展。 VTT的一些研究已针对HDV的能源使用问题。显而易见的是,为了真正提高能效,必须考虑整车。我们必须更好地了解影响能源需求的因素,而不仅仅是如何使发动机更省油。为此,已经对重型卡车-拖车组合中的能耗进行了分解。这种方法的目标是为能源使用的各个贡献者分配比例,并能够评估每个领域可能取得什么样的进展。除了整体和系统的方法之外,我们还需要一些度量标准来衡量能耗,以使结果尽可能反映现实情况。就结果的准确性和可重复性而言,使用底盘测功机能够承载全尺寸车辆并复制其在道路上的驾驶操作已被证明是一种出色的工具。此外,还添加了道路坡度(上坡/下坡)模拟,进一步增强了逼真度,并提高了与公路行驶相比,占空比在发动机转速/负荷序列中反映的接近程度。最终,这种匹配是方法成功与否的衡量标准。在案例研究中,解决了能源使用的几个领域,并确定了实际使用中节省能源的潜力。这些包括例如选择轮胎以在不损害安全性的情况下获得最佳的滚动损失,并且最近对完整的卡车-拖车组合进行了空气动力学方面的改进以减小阻力。本文将阐述这些研究中确定的可实现的节能效果。测试结果表明,重型卡车的能源效率可以提高,但是对于长期存在的重大影响,应该从能源效率的角度看待车辆的整体设计。

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