北美货运机车动态制动能量回收的前景

Travis D. Painter, Christopher P. L. Barkan
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引用次数: 9

摘要

随着燃料成本和环境影响对铁路的重要性越来越大,提高能源效率和减少排放的选择也越来越重要。对北美货运服务中柴电机车动态制动能量的潜在回收进行了研究。利用计算机模拟(列车能量模型)和机车事件记录仪数据,对动态制动可以回收的能量进行了估计。此外,研究了计算机模拟结果与实际记录事件之间的差异,以评估模型模拟工程师操作机车的程度,并为将来改进模拟模型提供指导。对在北美主要山口运营的一级铁路的能源回收潜力进行了案例研究。所分析的路线具有两个特点,使其成为研究能量回收潜力的良好候选者。首先,这里有一条延伸的下坡路,大约25英里长,其次,这里交通繁忙,每天大约有80列火车通过。这两个因素都提高了投资能源回收技术在经济上可行的可能性。研究发现,每列列车的总动态制动能量潜力超过1200千瓦时。根据存储系统的效率,每列火车可以节省多达70加仑的柴油燃料。这相当于每天2800加仑的燃料,并相应减少排放。然而,燃油节约本身并没有提供足够的激励来保证动态制动能量回收的实施,但加上环境成本节约,经济效益可能会被看到
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prospects for dynamic brake energy recovery on North American freight locomotives
As fuel costs and environmental impacts assume greater importance to railways, so does the importance of options for increased energy efficiency and emissions reduction. A study was conducted on the potential recovery of dynamic brake energy from diesel-electric locomotives in North American freight service. Using computer simulations (Train Energy Model) and locomotive event recorder data, estimations were made of the energy that could be recovered from dynamic brake use. In addition, the differences between the results of the computer simulations with respect to the actual events recorded were examined in order to evaluate how well the model simulates an engineer's operation of locomotives and provide guidance for future improvements to the simulation model. A case study of the energy recovery potential for a Class 1 railroad operating on a major mountain pass in North America was conducted. The route analyzed has two characteristics that make it a good candidate for studying energy recovery potential. First, there is an extended down grade approximately 25 miles long, and second, it has heavy traffic with about 80 trains a day traversing it. Both of these factors enhance the likelihood that investment in energy recovery technology will be economically viable. It was found that the total dynamic brake energy potential was over 1,200 kilowatt-hours per train. Depending on the efficiency of the storage system, as much as 70 gallons of diesel fuel could be saved per train. This equates to 2,800 gallons of fuel a day and a corresponding reduction in emissions. Nevertheless, fuel savings themselves do not provide enough incentive to warrant implementation of dynamic brake energy recovery, but with the addition of environmental cost savings financial benefits may be seen
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