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首页> 外文期刊>International Journal of Exergy >Thermo-economics analysis and evolutionary-based optimisation of a novel multi-generation waste heat recovery in the cement factory
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Thermo-economics analysis and evolutionary-based optimisation of a novel multi-generation waste heat recovery in the cement factory

机译:水泥厂新型多代余热回收的热经济学分析和基于进化的优化

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摘要

Cement factories are amongst the most energy consuming industries in the world. In view of the fact that almost a half input of energy is lost in clinker product, makes the waste heat recovery (WHR) system more interesting. In this paper, a new three-source multi generation flash WHR cycle is presented. Ammonia-water absorber chiller part of the cycle generates cooling load from turbine exhaust fluid and the residual heat is utilised in a heating system. Exergoeconomic analysis is also done to determinate cost rate of the power. To determine the optimal state of the system, the common evolutionary-based method, genetic algorithm, have been employed with aim of multi objective optimisation. Eventually, the results of a case study shows 6.45 MW power, 2.91 MW cooling and 2.88 MW heating are generated. Take one point of optimum Pareto front for instance, it has 55.6% energy and 73.9% exergy efficiencies.
机译:水泥厂是世界上能耗最高的行业之一。鉴于熟料产品几乎损失了一半的能源输入,这使得余热回收(WHR)系统变得更加有趣。本文提出了一种新的三源多代闪存WHR周期。循环中的氨水吸收式冷却器部分从涡轮机废气中产生冷却负荷,而余热则用于加热系统中。还进行了能效经济分析,以确定电力的成本率。为了确定系统的最佳状态,已采用基于进化的通用方法,遗传算法,以实现多目标优化。最终,案例研究的结果显示产生了6.45 MW的功率,2.91 MW的冷却和2.88 MW的加热。以最佳帕累托最优点为例,它具有55.6%的能量和73.9%的火用效率。

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