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Parametric study and multi-criteria optimization of total exergetic and cost rates improvement potentials of a new geothermal based quadruple energy system

机译:新的基于地热的四重能源系统的总能效和成本率改善潜力的参数研究和多准则优化

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摘要

The current study presents a new designed quadruple energy production system integrated with geothermal energy involving a cascade organic Rankine cycle, liquefied natural gas vaporization process, proton exchange membrane electrolyzer to produce four types of energies, namely electricity power, heating load for vaporizing liquefied natural gas, cooling effect and hydrogen. Besides conventional analyses, advanced thermodynamic and thermoeconomic analyses are conducted to determine the irreversibilities and related cost rates within the components of the desired system to find the amount of total avoidable exergy destruction rate, and total avoidable cost rates. Moreover, the effect of substantial design parameters namely, upper cycle mass flow rate, liquefied natural gas mass flow rate, geothermal mass flow rate, turbine 1 inlet pressure, liquefied natural gas pressure, geothermal pressure and condenser 1 outlet temperature are evaluated on the total avoidable exergy destruction, total avoidable exergy destruction cost and investment cost rates as well as their subdivisions. Sensitivity studies indicate that geothermal mass flow rate has a drastic positive effect on the total avoidable exergy destruction rate and total exergy destruction cost rate within 137.2% and 119.5%, respectively while condenser 1 outlet temperature improves total avoidable investment cost rate by about 0.05 $/h, as compared with other parameters. Finally, Non-dominated Sort Genetic Algorithm-II is applied to achieve the maximum improvement potential for desired system. Optimization results show that total avoidable exergy destruction rate and total avoidable exergy destruction cost rate get 3.27 and 4.9 times, respectively and total avoidable investment cost rate is improved within 17.4% relative to the base point. (C) 2017 Elsevier Ltd. All rights reserved.
机译:当前的研究提出了一种新的设计的四重能源生产系统,该系统与地热能集成在一起,涉及级联有机朗肯循环,液化天然气汽化过程,质子交换膜电解器以产生四种类型的能量,即电力,汽化液化天然气的热负荷,冷却效果和氢气。除了常规分析之外,还进行了高级热力学和热经济分析,以确定所需系统组件内的不可逆性和相关成本率,以找到总可避免的火用破坏率和总可避免的成本率。此外,总体上评估了主要设计参数(即上循环质量流量,液化天然气质量流量,地热质量流量,涡轮1入口压力,液化天然气压力,地热压力和冷凝器1出口温度)的影响。可避免的火用破坏,总的可避免的火用破坏成本和投资成本率及其细分。敏感性研究表明,地热质量流量对总可避免火用破坏率和总火用破坏成本率分别有137.2%和119.5%的影响,而冷凝器1出口温度可使总可避免投资成本率提高约0.05 $ /。 h,与其他参数相比。最后,应用非支配排序遗传算法-II来实现所需系统的最大改进潜力。优化结果表明,总可避免火用破坏率和总可避免火用破坏成本率分别为3.27倍和4.9倍,总可避免投资成本率相对于基准点提高了17.4%。 (C)2017 Elsevier Ltd.保留所有权利。

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