首页> 外文OA文献 >THERMO-ECONOMIC OPTIMIZATION OF ORGANIC RANKINE CYCLE SYSTEMS FOR WASTE HEAT RECOVERY FROM EXHAUST AND RECIRCULATED GASES OF HEAVY DUTY TRUCKS
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THERMO-ECONOMIC OPTIMIZATION OF ORGANIC RANKINE CYCLE SYSTEMS FOR WASTE HEAT RECOVERY FROM EXHAUST AND RECIRCULATED GASES OF HEAVY DUTY TRUCKS

机译:重型卡车排气和循环气中废热回收的有机兰金循环系统的热经济优化

摘要

Waste heat recovery (WHR) ORC is a very promising technology for reducing fuel consumption and consequently the CO2 emissions of future heavy-duty trucks (HDT). Nonetheless, the adoption of this technology in the automotive domain requires specific R&D activities going from the system definition to the on-board integration.This study focuses on the preliminary design phase of ORC systems recovering the heat wasted from two of the sources available on a HDT: the exhaust and recirculated gases. From these heat sources and their combinations, 6 possible architectures are identified. On the other hand, 4 volumetric expansion machine technologies are considered (Scroll, Screw, Piston and Vane Expanders). At the end, 24 topologies are modelled considering only the main components (Pump, Heat exchangers, Expansion machines).A three-step optimization method is proposed to identify the most promising system. First, the most suitable design conditions are identified using a simple model of expansion machine. In a second step, the design phase, using more detailed models for the expansion machines, a thermodynamic and economic optimizations are performed. Finally, in a third step, the output power of the latter system models is maximized in off-design conditions.
机译:余热回收(WHR)ORC是一种非常有希望的技术,它可以减少燃料消耗,从而减少未来重型卡车(HDT)的CO2排放。尽管如此,在汽车领域采用该技术仍需要进行特定的研发活动,从系统定义到车载集成。这项研究的重点是ORC系统的初步设计阶段,该阶段要从两个可用的热源中回收热量。 HDT:废气和再循环气体。根据这些热源及其组合,确定了6种可能的架构。另一方面,考虑了4种容积膨胀机技术(涡旋式,螺杆式,活塞式和叶片式膨胀机)。最后,仅考虑主要组件(泵,热交换器,膨胀机)对24种拓扑进行建模,提出了一种三步优化方法来确定最有希望的系统。首先,使用简单的膨胀机模型确定最合适的设计条件。在第二阶段(设计阶段)中,使用更详细的膨胀机模型进行热力学和经济性优化。最终,在第三步中,后一种系统模型的输出功率在非设计条件下得到了最大化。

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