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Thermodynamic exergo-economic and exergo-environmental analysis of hybrid geothermal-solar power plant based on ORC cycle using emergy concept

机译:基于能值概念基于ORC循环的混合地热太阳能发电厂热力学能经济和能环境分析

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摘要

Design and optimization of the energy system with the efficient method is one the major problem in recent years. The combined emergy-exergy-economic-environmental analysis is one of new methods selected for the optimization of energy systems. At present paper, first, optimal design of thermodynamic, exergo economic and exergo environmental was developed; the geothermal power plant was used as a complement to concentrated solar power (CSP) and then combined emergy-exergy-economic-environmental analysis was conducted. A standalone geothermal cycle (first mode), as well as hybrid Geothermal-Solar cycle (second mode) were investigated to generate the heating/cooling power of the building. The close similarity of the results of the exergy and emerge-economic analysis was very interesting. For standalone geothermal cycle, both exergo and emerge-economic analysis implied that highest value (6.02E-04 $/s and 3.1915E+09 sej/s) was related to turbine due to the heat generated by the impact of the blade, and the lowest value was related to ORC condenser. The exergo and emergo-economic analysis for geothermal-solar hybrid cycle, due to the increase in refrigerant pressure drop inside the coil, the evaporator (4.50E-03 $/s and 4.4699E+09 sej/s) and turbine (2.40E-03 $/s and 2.1920E+09 sej/s) had the highest amount. Also for standalone cycle, exergo and emergo-environmental implied that ORC turbine had the highest value of 1.26E-06 pts/s and 9.7201E+09sej/s. For hybrid geothermal-solar cycle, the evaporator (3.77E-06 pts/s and 6.1814E+08sej/s) and turbine (3.27E-06 pts/s and 6.37E+08 sej/s) had the highest amount of exergo and emergo-environmental. Solar power plants have only an initial cost and because solar energy is freely available to the system, so its economical exergy degradation is very low and has the lowest environmental exergy degradation. According to the results of the exergo-economic analysis of the hybrid power plant, the highest investment cost is related to solar power plant. It also has the lowest cost of exergy degradation because the environmental impact of fuel flow of solar panel is zero. The highest emerge-environmental rate of 3.3250E+09 (sej/s) was belonged to the solar power plant, but its environmental destruction rate was minimal because it does not consume fuel.
机译:高效的能源系统设计与优化是近年来的主要问题之一。能值-能值-经济-环境综合分析是为能源系统优化选择的新方法之一。目前,首先,对热力学,经济环境和环境进行了优化设计。地热电厂是对聚光太阳能(CSP)的补充,然后进行了能值-能值-经济-环境综合分析。研究了独立的地热循环(第一模式)以及混合地热-太阳能循环(第二模式),以产生建筑物的加热/制冷功率。火用和新兴经济分析的结果非常相似。对于独立的地热循环,erergo和新兴经济分析均暗示,由于叶片撞击产生的热量,最高值(6.02E-04 $ / s和3.1915E + 09 sej / s)与涡轮有关,并且最低值与ORC冷凝器有关。由于盘管,蒸发器(4.50E-03 $ / s和4.4699E + 09 sej / s)和涡轮机(2.40E)内制冷剂压降的增加,对地热-太阳能混合循环进行了exergo和emergo-经济分析-03 $ / s和2.1920E + 09 sej / s)的金额最高。同样对于独立循环,exergo和emergo-environmental暗示ORC涡轮的最高值为1.26E-06 pts / s和9.7201E + 09sej / s。对于混合地热-太阳能循环,蒸发器(3.77E-06 pts / s和6.1814E + 08sej / s)和涡轮机(3.27E-06 pts / s和6.37E + 08 sej / s)具有最高的exergo量和emergo-environmental。太阳能发电厂仅具有初始成本,并且由于该系统可以免费使用太阳能,因此其经济的火用能级降低非常低,并且环境能用金级降低最小。根据混合电站的经济分析结果,最高的投资成本与太阳能电站有关。由于太阳能电池板燃料流的环境影响为零,因此它的火用降解成本也最低。太阳能发电厂的最高涌出环境速率为3.3250E + 09(sej / s),但其环境破坏率极低,因为它不消耗燃料。

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