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An exergoeconomic assessment of waste heat recovery from a Gas Turbine-Modular Helium Reactor using two transcritical CO2 cycles

机译:使用两个跨临界CO2循环从燃气轮机-模块化氦反应堆中回收余热的能效经济评估

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A comprehensive study is performed on an energy conversion system which combines a gas turbine modular helium reactor (GT-MHR) and two transcritical CO2 cycles (tCO(2)). The aim of this study is to assess the energy, exergy and economic behavior of the proposed system, considering five indicators: the energy efficiency, the exergy efficiency, the total exergy destruction cost rate, the overall exergoeconomic factor and the total cost rate. A parametric study is also conducted to evaluate the influence of key decision variables on the GT-MHR/tCO(2) performance. Finally, the combined cycle is optimized to minimize the total cost rate. The results show that the energy efficiency of GT-MHR/tCO(2) cycle is 7.92% higher than that of the simple GT-MHR cycle at 850 degrees C. The largest exergy destruction rate takes place in the reactor, and after that in the helium turbine and the recuperator. The components in tCO(2) cycles have less exergy destruction. When the optimization is conducted based on the exergoeconomics, the overall exergoeconomic factor, the total cost rate and the total exergy destruction cost rate are 55.2%, 20,752 VI and 9292 $/h, respectively. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对能量转换系统进行了综合研究,该系统结合了燃气轮机模块化氦反应堆(GT-MHR)和两个跨临界CO2循环(tCO(2))。这项研究的目的是评估拟议系统的能源,火用和经济行为,其中考虑了五个指标:能源效率,火用效率,总火用破坏成本率,总能用经济因素和总成本率。还进行了参数研究,以评估关键决策变量对GT-MHR / tCO(2)性能的影响。最后,优化联合循环以最大程度地降低总成本率。结果表明,在850摄氏度时,GT-MHR / tCO(2)循环的能量效率比简单GT-MHR循环的能量效率高7.92%。最大的火用破坏速率发生在反应堆中,此后在氦轮机和换热器。 tCO(2)循环中的组件具有较少的火用破坏力。当基于能效经济学进行优化时,总能效因子,总成本率和总火用破坏成本率分别为55.2%,20,752 VI和9292 $ / h。 (C)2016 Elsevier Ltd.保留所有权利。

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