首页> 外文会议>IEEE/ASME(American Society of Mechanical Engineers) Joint Rail Conference; 20030422-20030424; Chicago,IL; US >INVESTIGATION OF HYBRID FUEL CELL (HFC) TECHNOLOGY APPLICATIONS ON THE FUTURE PASSENGER RAILROAD TRANSPORTATION: PART Ⅰ: Investigation of Diesel Based Hybrid Technology Applications on the Future Passenger Railroad Transportation
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INVESTIGATION OF HYBRID FUEL CELL (HFC) TECHNOLOGY APPLICATIONS ON THE FUTURE PASSENGER RAILROAD TRANSPORTATION: PART Ⅰ: Investigation of Diesel Based Hybrid Technology Applications on the Future Passenger Railroad Transportation

机译:混合燃料电池(HFC)技术在未来客运铁路运输中的应用研究:第一部分:基于柴油的混合技术在未来客运铁路运输中的应用研究

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Due to the consideration of fragile security, and longer check-in times and inconveniences due to increased air travel security examination since September 11th 2001, more and more people have turn to ground transportation. Unfortunately, the inefficient, environment-unfriendly and unsafe passenger cars and buses are the only choices available for middle distance trips. Development of high efficiency, clean and high speed railroad passenger transportation system has become more necessary to overcome this weak link. In this paper, the applicability of hybrid drive train technologies for middle-distance passenger train locomotives will be investigated. A systematic design of the diesel based hybrid locomotive helps to increase efficiency, improve fuel economy, reduce emissions and also reduce mass production costs. Furthermore, professional management and maintenance of railroad train locomotives make such new technologies more practical than for road vehicles. The success of such transportation system will have a great positive impact on our social activities, quality of life, energy supply, environment and economy. A diesel based hybrid electric locomotive (HEL) with batteries or an ultracapacitor is an option to reduce fuel consumption and emissions and provide better performance and fuel economy. The reduced fuel consumption helps reduce the amount of pollutants released. Engineering estimation indicate that emissions will be reduced by 70% and fuel efficiency will be increased by at least 30% in hybrid locomotives.
机译:自2001年9月11日以来,由于考虑到脆弱的安全性,较长的登机时间以及由于增加的航空旅行安全检查而带来的不便,越来越多的人转向地面运输。不幸的是,低效率,不环保,不安全的乘用车和公共汽车是中距离旅行的唯一选择。为了克服这一薄弱环节,高效,清洁,高速的铁路客运系统的开发变得更加必要。在本文中,将研究混合动力传动技术在中距离旅客列车机车中的适用性。柴油混合动力机车的系统设计有助于提高效率,改善燃油经济性,减少排放并降低批量生产成本。此外,铁路机车的专业管理和维护使这种新技术比公路车辆更实用。这种运输系统的成功将对我们的社会活动,生活质量,能源供应,环境和经济产生巨大的积极影响。带有电池或超级电容器的柴油混合动力机车(HEL)是减少燃油消耗和排放并提供更好的性能和燃油经济性的选择。减少的燃油消耗有助于减少排放的污染物。工程估计表明,混合动力机车的排放量将减少70%,燃油效率至少提高30%。

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