首页> 外文期刊>International journal of ambient energy >Exergetic performance optimization of an endoreversible intercooled regenerated Brayton cogeneration plant. Part 2: Exergy output rate and exergy efficiency optimization
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Exergetic performance optimization of an endoreversible intercooled regenerated Brayton cogeneration plant. Part 2: Exergy output rate and exergy efficiency optimization

机译:内可逆中冷再生布雷顿热电联产厂的性能优化。第2部分:火用产出率和火用效率优化

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摘要

The exergy output rate and exergy efficiency performances of an endoreversible intercooled regenerative Brayton cogeneration plant are optimized based on the model which is established using finite time thermodynamic in Part 1 of this paper. It is found that the optimal heat conductance allocation of the regenerator is almost zero. When the total pressure ratio and the heat conductance allocation of the regenerator are fixed, it is shown that there exist two optimal intercooling pressure ratios, and two optimal groups of the heat conductance allocations among the hot-, cold- and consumer-side heat exchangers and the intercooler, which correspond to a maximum dimensionless exergy output rate and a maximum exergy efficiency. When the total pressure ratio is variable, there exist two optimal total pressure ratios which correspond to a double-maximum dimensionless exergy output rate and a double-maximum exergy efficiency, also the corresponding exergy efficiency and exergy output rate are obtained. The effects of the total heat exchanger conductance and the consumer-side temperature on the double-maximum dimensionless exergy output rate and the double-maximum exergy efficiency are discussed. It is found that there exists an optimal consumer-side temperature which correspond to a thrice- maximum dimensionless exergy output rate, and the intercooling process is not necessary by taking exergy efficiency as the objective when the consumer-side temperature is high.
机译:基于本文第1部分中使用有限时间热力学建立的模型,优化了内可逆中冷再生布雷顿热电联产厂的火用输出率和火用效率。发现再生器的最佳导热率分配几乎为零。当再生器的总压力比和导热系数固定时,表明存在两个最佳的中间冷却压力比,并且在热,冷和用户侧热交换器之间存在两个最佳的导热系数组。和中间冷却器,其对应于最大无量纲的(火力)输出率和最大(火力)效率。当总压力比可变时,存在两个最优的总压力比,分别对应于最大无量纲的双最大火力输出率和最大最大火用效率的双倍,并且获得了相应的火力效率和火用输出率。讨论了总换热器电导率和用户侧温度对双最大无量纲火用输出率和双最大火用效率的影响。发现存在对应于三次最大无量纲的本能输出速率的最佳用户侧温度,并且当用户侧温度较高时,以本能效率为目标,无需进行中间冷却过程。

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