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Achieving High Engine Efficiency for Heavy-Duty Diesel Engines by Waste Heat Recovery Using Supercritical Organic-Fluid Rankine Cycle

机译:利用超临界有机液朗肯循环对重型柴油发动机实现高发动机效率

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A supercritical organic Rankine cycle (ORC) system for recovery of waste heat from heavy-duty diesel engines is proposed. In this system, an organic, medium-boiling-point fluid is selected as the working fluid, which also serves as the coolant for the charge air cooler and the EGR coolers. Because the exhaust temperature can be as high as 650°C during the DPF regeneration, an exhaust cooler is included in the system to recover some of the high level exhaust energy. In the present ORC system, the expansion work is conducted by a uniflow reciprocating expander, which simplifies the waste-heat-recovery (WHR) system significantly. This reciprocating Rankine engine is more appropriate for on-road-vehicle applications where the condition for waste heat is variable. The energy level of waste heat from a heavy-duty diesel engine is evaluated by the analyses of the first and second law of thermodynamics. The second law analysis indicates that, although heat rejection from the engine coolant forms up to 20% of the fuel energy, it is of the least interest to WHR because only a small portion of it can be converted into mechanical work. The study of this paper demonstrates that, with the hybrid power system of the diesel engine and the Rankine engine operated with waste heat, substantial enhancement in engine power and improvement in fuel economy can be achieved.
机译:提出了一种用于从重型柴油​​发动机回收废热的超临界有机朗朗循环(ORC)系统。在该系统中,选择有机,中沸点流体作为工作流体,其也用作电荷空气冷却器和EGR冷却器的冷却剂。由于在DPF再生期间排气温度可以高达650℃,因此系统中包括排气冷却器以恢复一些高水平的排气能量。在本发明的ORC系统中,扩展工作是由uniflow往复式膨胀机进行的,这显着简化了废热回收(WHR)系统。这种往复式的朗肯发动机更适合于道路车辆应用,其中废热的条件是可变的。通过热力学的第一和第二律法律分析评估来自重型柴油发动机的废热的能量水平。第二定律分析表明,虽然从发动机冷却剂排热形成到燃料能量的20%,它是最感兴趣的WHR因为只有它的一小部分可被转换成机械功。本文的研究表明,利用柴油发动机的混合动力系统和用废热操作的朗肯发动机,可以实现发动机功率的显着增强和燃料经济性的提高。

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