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Simulations of a Bottoming Organic Rankine Cycle (ORC) Driven by Waste Heat in a Diesel Engine (DE)

机译:柴油发动机中的废热驱动的底部有机朗肯循环(ORC)的模拟(DE)

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A bottoming waste-heat-recovery (WHR) model based on the Organic Rankine Cycle (ORC) is proposed to recover waste heat from exhaust gas and jacket water of a typical diesel engine (DE). The ORC model is detailed built based upon real structural and functional parameters of each component, and is able to precisely reflect the working process of the experimental ORC system constructed in lab. The DE is firstly tested to reveal its energy balance and the features of waste heat. The bottoming ORC is then simulated based on experimental data from the DE bench test using R245fa and R601a as working fluid. Thermodynamic evaluations are done on key parameters like waste heat recovered, expansion power, pump power loss and system efficiency. Results indicate that maximum expansion power and efficiency of the ORC are up to 18.8kW and 9.6%. Influences of engine condition, fluid mass flow and evaporating pressure on system performance are analyzed and meaningful regularities are revealed. The combined system of DE and bottoming ORC (DE-ORC) is also investigated. The results showed that the integration of the bottoming ORC greatly changed energy distribution of the DE, and the DE thermal efficiency is up to 47.2%, increasing by 9.0%.
机译:提出了一种基于有机朗肯循环(ORC)的底层废热回收(WHR)模型,以回收典型柴油发动机(DE)的废气和夹套水的废热。基于每个组件的真实结构和功能参数,可以详细构建ORC模型,并且能够精确地反映实验室中构建的实验ORC系统的工作过程。首先经过测试,以揭示其能量平衡和废热的特征。然后基于使用R245FA和R601A作为工作流体的DE台支试验的实验数据来模拟底部逆转录。热力学评估是在浪费恢复,扩张功率,泵功率损耗和系统效率的关键参数上进行的。结果表明,兽人的最大膨胀功率和效率高达18.8kW和9.6%。分析了发动机状态,流体质量流量和蒸发压力对系统性能的影响,并揭示了有意义的规律。还研究了DE和底部ORC(DE-ORC)的组合系统。结果表明,底层兽人的整合大大改变了DE的能量分布,DE热效率高达47.2%,增长9.0%。

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