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Accelerating hydrogen implementation by mass production of a hydrogen bus chassis

机译:通过大规模生产氢气客车底盘来加速氢气的实施

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Much of the hydrogen vehicle research to date has been conducted and demonstrated in wealthy nations, with very few exceptions. However, developing economies are largely dependent on public transportation, and struggle with air pollution and energy security concerns. The developing regions are in great need of alternative transportation solutions, and although many alternatives are being explored, hydrogen-fueled vehicles are emerging as one of the only technologies that can meet the demands for lower greenhouse gas emissions, lower emissions of air pollutants, and reduced dependence on imported energy. Many conventional buses in developing regions are built from an imported 'buggy-chassis', which is a functional bus chassis with an engine and other auxiliaries. 'Buggy-chassis' are designed with a very short wheel-base dimension to reduce freight costs as they are often shipped overseas. Domestic companies extend the 'buggy-chassis' to full bus length, build the body and cabin, and install other auxiliary systems. The existing infrastructure of the bus buggy-chassis market can be used to leverage hydrogen technology for mass production. This solution allows developing nations to import a state-of-the-art vehicle, with the possibility for local content in the final delivered product, while maintaining the flexibility for innovative technological developments and promoting hydrogen research within the developing economies. Indeed, a modular series-hybrid drivetrain can be made adaptable to a range of primary power sources such as an internal combustion engine or fuel cell engine. The modular approach provides an opportunity to reduce cost while still providing flexibility for innovation, and allows customers to tailor performance to suit their topographical and operational needs.
机译:迄今为止,大多数氢燃料汽车的研究已经在富裕国家进行并得到了证明,只有少数例外。但是,发展中经济体在很大程度上依赖于公共交通,并在空气污染和能源安全问题上作斗争。发展中地区急需替代交通解决方案,尽管正在探索多种替代方案,但氢燃料汽车正在成为满足减少温室气体排放,减少空气污染物排放和降低排放的唯一技术之一。减少对进口能源的依赖。在发展中地区,许多传统的公交车都是从进口的“越野车”制造的,“越野车”是带有发动机和其他辅助设备的功能性公交车底盘。 “大车底盘”的轮轴尺寸非常短,可以降低运输成本,因为它们经常被运往国外。国内公司将“越野车底盘”扩展到了整个公交车的长度,建造了车身和机舱,并安装了其他辅助系统。公交车底盘市场的现有基础设施可用于利用氢气技术进行批量生产。该解决方案使发展中国家可以进口最先进的车辆,并在最终交付的产品中包含本地含量,同时保持创新技术开发的灵活性并在发展中经济体中促进氢研究。实际上,模块化的串联混合动力传动系统可以制造成适应于一系列主要动力源,例如内燃机或燃料电池发动机。模块化方法提供了降低成本的机会,同时仍提供创新的灵活性,并允许客户调整性能以适应其地形和运营需求。

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