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各种地热发电循环配置的能量、㶲、㶲经济和㶲环境影响分析及优化

Energy, Exergy, Exergoeconomic and Exergoenvironmental Impact Analyses and Optimization of Various Geothermal Power Cycle Configurations.

作者信息

Shamoushaki Moein, Aliehyaei Mehdi, Rosen Marc A

机构信息

Department of Industrial Engineering, University of Florence, 50134 Firenze, Italy.

Department of Mechanical Engineering, Pardis Branch, Islamic Azad University, Pardis New City 1468995513, Iran.

出版信息

Entropy (Basel). 2021 Nov 9;23(11):1483. doi: 10.3390/e23111483.

Abstract

Energy, exergy, and exergoeconomic evaluations of various geothermal configurations are reported. The main operational and economic parameters of the cycles are evaluated and compared. Multi-objective optimization of the cycles is conducted using the artificial bee colony algorithm. A sensitivity assessment is carried out on the effect of production well temperature variation on system performance from energy and economic perspectives. The results show that the flash-binary cycle has the highest thermal and exergy efficiencies, at 15.6% and 64.3%, respectively. The highest generated power cost and pay-back period are attributable to the simple organic Rankine cycle (ORC). Raising the well-temperature can increase the exergy destruction rate in all configurations. However, the electricity cost and pay-back period decrease. Based on the results, in all cases, the exergoenvironmental impact improvement factor decreases, and the temperature rises. The exergy destruction ratio and efficiency of all components for each configuration are calculated and compared. It is found that, at the optimum state, the exergy efficiencies of the simple organic Rankine cycle, single flash, double flash, and flash-binary cycles respectively are 14.7%, 14.4%, 12.6%, and 14.1% higher than their relevant base cases, while the pay-back periods are 10.6%, 1.5% 1.4%, and 0.6% lower than the base cases.

摘要

报告了各种地热配置的能量、㶲和㶲经济评估。对循环的主要运行和经济参数进行了评估和比较。使用人工蜂群算法对循环进行了多目标优化。从能量和经济角度对生产井温度变化对系统性能的影响进行了敏感性评估。结果表明,闪蒸-双循环具有最高的热效率和㶲效率,分别为15.6%和64.3%。最高的发电成本和投资回收期归因于简单有机朗肯循环(ORC)。提高井温会增加所有配置中的㶲破坏率。然而,电力成本和投资回收期会降低。基于结果,在所有情况下,㶲环境影响改善因子都会降低,且温度会升高。计算并比较了每种配置下所有组件的㶲破坏率和效率。结果发现,在最佳状态下,简单有机朗肯循环、单闪蒸、双闪蒸和闪蒸-双循环的㶲效率分别比其相关基准情况高14.7%、14.4%、12.6%和14.1%,而投资回收期比基准情况低10.6%、1.5%、1.4%和0.6%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcf9/8620239/485eb64c7fb4/entropy-23-01483-g001.jpg

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