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Thermodynamic and thermoeconomic analysis of a 21 MW binary type air-cooled geothermal power plant and determination of the effect of ambient temperature variation on the plant performance

机译:21 MW二元型风冷地热发电厂的热力学和热经济分析,并确定环境温度变化对植物性能的影响

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The thermodynamic and thermoeconomic performances of a 21 MW geothermal power plant with air-cooled two level binary type organic Rankine cycle was numerically investigated based on its design and operating data. The investigated plant is the Sinem Geothermal Power Plant in Germencik, Aydin, Turkey. The paper provides a detailed comparison of the exergetic performance of this plant with other eight similar type of plant units, which make use of geothermal resources with similar specific exergies. Results indicate that the exergetic efficiency of the Sinem Geothermal Power Plant is the highest with 48.2% and the others vary between 9.6% and 42.7%. This result is mainly related to the exergy losses due to suppression of heat transfer in this plant, via low temperature brine reinjection, small temperature difference in the heat exchangers and high efficiencies of the individual components. First and second law efficiencies, as well as the exergy losses and improvement potentials of each component in the plant are also calculated. In air-cooled geothermal power plants, since ambient temperature is a critical parameter for the plant performance, both thermal and economic analysis of the plant is performed based on variation in ambient air temperature. Specifically, thermoeconomic analysis of the plant is evaluated to determine the exergoeconomic factor, the relative cost difference and the sum unit cost of the product (SUCP) of the plant. The effect of ambient temperature on the SUCP of the power plant, power generation, energy and exergy efficiencies are also examined in the present study. The results showed that; when the ambient temperature increases from 5 degrees C to 35 degrees C the reduction in power generation is 6.8 MW, energy efficiency decreases from 13.7% to 9.2% while exergy efficiency decreases from 54.9% to 36.7 and SUCP of the plant increases from nearly 230 $/GJ to 330 $/GJ.
机译:基于其设计和操作数据,在数值研究了21 MW地热发电厂的21 MW地热发电厂的热力学和热经济性能。调查的植物是土耳其Aydinik,Aydinik的Sinem地热发电厂。本文规定了这种植物与其他八种类似植物单位的锻炼性能的详细比较,它利用具有类似特定Exergies的地热资源。结果表明,SINEM地热发电厂的前进效率最高,48.2%,其他结果在9.6%和42.7%之间变化。该结果主要与抑制该植物的热传递导致的漏洞,通过低温盐水再注,热交换器中的温度差异和各个组分的高效率。还计算了植物中每个组分的第一和第二法律效率,以及植物中每个组分的丧失损失和改善潜力。在风冷地热发电厂中,由于环境温度是用于植物性能的关键参数,因此基于环境空气温度的变化进行植物的热量和经济分析。具体地,评估植物的热经济分析以确定植物产品(SUCP)的exergo经济因素,相对成本差异和单位成本。在本研究中还研究了环境温度对电厂,发电,能量和效率的SUCP的影响。结果表明;当环境温度从5摄氏度增加到35摄氏度时,发电的减少为6.8兆瓦,能量效率从13.7%降低至9.2%,而低射效率从54.9%降低到36.7,植物的SUCP从近230美元增加增加。 / gj到330 $ / gj。

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