首页> 外文会议>International Conference on Ecological Vehicles and Renewable Energies >Emissions and Total Cost of Ownership Assessment of Hybrid Propulsion Concepts for Bus Transport with CNG or Diesel Engine
【24h】

Emissions and Total Cost of Ownership Assessment of Hybrid Propulsion Concepts for Bus Transport with CNG or Diesel Engine

机译:用CNG或柴油发动机公交车辆公交车辆杂交推进概念的排放和总体拥有成本

获取原文

摘要

Air pollution is one of the emerging problems in our society. (Plug-in) hybrid electric propulsion concepts offer the possibility to reduce emissions as well as total cost of ownership (TCO) for public transport vehicles (e.g. bus application). In this context, typically diesel engines are used to form the hybrid propulsion system of the vehicle. Gaseous fuels represent an attractive alternative to diesel for both ecologic and economic reasons. In the framework of the research project “Optimised Real-world Cost-Competitive Modular Hybrid Architecture” (ORCA), which was funded by the EU, two different hybrid electric propulsion concepts have been investigated: one using a diesel engine as internal combustion engine and one using CNG engine. The aim of the current study is to analyse specific benefits for the aforementioned hybrid propulsion systems for representative driving scenarios with regard to emissions (e.g. NOx and CO2) and total cost of ownership in bus application. Engine models based on experimental data for diesel and CNG were developed to estimate the emissions from engine torque and rotational speed. For designing optimal energy management strategies for each propulsion system, maps-driven quasi-static models for specific engine types are used in this study. This paper compares the two aforementioned propulsion concepts regarding their CO2 and NOxemissions. This comparison is performed for relevant bus missions (urban, suburban, with and without zero-emission zone) and with different energy management strategies. In addition to the emissions, also the downsizing potential of the combustion engine has been analysed to minimize the powertrain TCO (pTCO) for plug-in hybrid electric buses. The results of the performed analyses show that the hybrid propulsion concept using the CNG engine shows advantages both with respect to emissions as well as to pTCO. The pTCO is 10% lower, CO2 emissions are 13% lower and the NOx emissions are more than 50% lower than with the diesel combustion engine. These results are consistent across all usage profiles under investigation.
机译:空气污染是我们社会的新出现问题之一。 (插入式)混合动力电动推进概念提供了降低排放的可能性以及公共交通工具(例如总线应用程序)的所有权总额(TCO)。在这种情况下,通常使用柴油发动机用于形成车辆的混合动力推进系统。气体燃料代表生态和经济原因的柴油有吸引力的替代品。在研究项目的框架中,由欧盟资助的“优化的真实世界成本竞争力的模块化混合架构”(ORCA),已经研究了两种不同的混合动力推进概念:使用柴油发动机作为内燃机和一个使用CNG发动机。目前的研究的目的是分析关于发射的代表性驾驶场景的上述混合推进系统的特定益处(例如,没有 x 和co. 2 )总线应用中的总体拥有总额。开发了基于柴油和CNG实验数据的发动机模型,以估算发动机扭矩和转速的排放。为了为每个推进系统设计最佳能量管理策略,本研究使用了用于特定发动机类型的地图驱动的准静态模型。本文比较了对其有限公司的两个上述推进概念 2 和不 x 排放。这种比较是针对相关的巴士任务(城市,郊区,有零排放区)以及不同的能源管理策略。除了排放之外,还分析了内燃机的缩小潜力,以最小化用于插入式混合动力电流的动力总成TCO(PTCO)。所执行的分析结果表明,使用CNG发动机的混合动力推进概念显示出相对于排放以及PTCO的优点。 PTCO为10%,CO 2 排放量下降13%,否 x 排放量低于柴油燃烧发动机的50%。这些结果在调查下的所有使用型材中都是一致的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号