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Theoretical Analysis of a Combined Thermoelectric Generator (TEG) and Dual-loop Organic Rankine Cycle (DORC) System Using for Engines' Exhaust Waste Heat Recovery

机译:用于发动机废物热回收的组合热电发电机(TEG)和双环有机朗肯循环(DORC)系统的理论分析

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This paper presents a model system TEG-DORC that employs thermoelectric generator (TEG) as a topping cycle integrated with a dual-loop organic Rankine bottoming cycle (DORC) to recover exhaust heat of internal combustion engine (ICE). The thermodynamic performance of TEG-DORC system is analyzed based on the first and second law of thermodynamics when system net output power W_(net), thermal efficiency η_(th), exergy efficiency ηe and volumetric expansion ratio are chosen as objective functions. The model has many parameters that affect combined system performance such as TEG scale, evaporation pressure of high temperature ORC loop (HT loop) P_(evp, HT), condensation temperature of HT loop T_(cond, HT). It is suggested that HT loop has a vital influence on system performance. The results show that TEG-DORC system can significantly improve system performance, and system net output power gets maximum (30.69kW) when T_(cond, HT) is 370K and P_(evp, HT) is 4MPa, accordingly, the absolute effective thermal efficiency increases by 5.2%. The maximum thermal efficiency and exergy efficiency are 26.39% and 53.08% respectively. And applying TEG modules can't promote DORC system performance as expected.
机译:本文介绍了一种模型系统TEG-DORC,它采用热电发电机(TEG)作为与双环有机朗肯底部(DORC)集成的顶部循环,以回收内燃机(ICE)的废热。基于系统净输出功率W_(净),热效率η_(TH),热效率ηe和体积扩展比作为客观函数,根据热力学的第一和第二热力学定律进行分析TEG-DORC系统的热力学性能。该模型具有许多影响组合系统性能,如TEG刻度,高温兽人环路(HT循环)P_(EVP,HT),HT环路的冷凝温度(COND,HT)的蒸发压力。建议HT循环对系统性能的重要影响。结果表明,TEG-DORC系统可以显着提高系统性能,系统净输出功率最大(30.69kW)当T_(COND,HT)为370K和P_(EVP,HT)为4MPA时,绝对有效的热量效率增加了5.2%。最大热效率和高级效率分别为26.39%和53.08%。并应用TEG模块无法按预期促进DORC系统性能。

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