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On the design of waste heat recovery organic Rankine cycle systems for engines of long-haul trucks

机译:长途卡车发动机余热回收有机朗肯循环系统的设计

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摘要

The reduction of CO2 emissions from anthropogenic activities is a strategic goal of the EU in which heavy duty vehicles can contribute in a relevant way. A promising solution is the recovery of the thermal energy initially wasted by the engine, which represents around 60 % of the combustion energy. Transforming this heat into mechanical or electrical energy will thus increase the engine thermal efficiency. The conversion can be performed by means of a thermodynamic cycle (e.g. organic or non-organic Rankine cycles) using the waste heat as energy source, as it has already been developed in large stationary applications. Depending on the operating conditions, fuel consumption, and hence CO2 emissions, can theoretically be reduced by 10% to 15%.Nonetheless, the adoption of such technology in the automotive domain requires specific R&D activities to select the working fluid, the components and the most appropriate system architecture in order to achieve sustainable costs and the required level of reliability, while the transient nature of the heat sources available on the truck must be taken into account to evaluate the resulting fuel economy. In this regards, this thesis, based on experimental studies and simulation models, contributes to the characterization and the design of Waste Heat Recovery Organic Rankine Cycle Systems for engines of long haul trucks.
机译:减少人为活动产生的二氧化碳排放量是欧盟的战略目标,其中重型车辆可以以相关方式做出贡献。一种有前途的解决方案是回收最初由发动机浪费的热能,约占燃烧能的60%。因此,将这些热量转化为机械能或电能将提高发动机的热效率。转化可以通过利用废热作为能源的热力学循环(例如有机或非有机兰金循环)来进行,这已经在大型固定应用中得到了发展。根据运行条件的不同,理论上可以将燃料消耗量以及因此的CO2排放量降低10%至15%。尽管如此,在汽车领域采用这种技术仍需要进行特定的研发活动,以选择工作液,部件和零件。为了达到可持续的成本和所需的可靠性水平,应采用最合适的系统架构,同时必须考虑卡车上可用热源的瞬态特性,以评估由此产生的燃油经济性。因此,本文基于实验研究和仿真模型,为长途卡车发动机余热回收有机朗肯循环系统的表征和设计做出了贡献。

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    Guillaume, Ludovic;

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  • 年度 2017
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