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Performance Analysis and Optimization of Double-Flash Geothermal Power Plants

机译:双闪式地热发电厂性能分析与优化

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One of the most important cycles for electricity generation from geothermal energy is the double-flash cycle. Approximately 25% of the total geothermal based electricity generation all over the world comes from double-flash geothermal power plants. In this paper, performance analysis of a hypothetical double-flash geothermal power plant is performed and variations of fundamental characteristics of the plant are examined. In the performance analysis, initially, optimum flashing pressures are determined, and energy and exergy values of the base points of the plant are calculated. In addition, first and second law efficiencies of the power plant are calculated. Main exergy destruction locations are determined and these losses are illustrated in an exergy flow diagram. For these purposes, it is assumed that a hypothetical double-flash geothermal power plant is constructed in the conditions of western Turkey. The geothermal field where the power plant will be built produces geofluid at a temperature of 210℃ and a mass flow rate of 200 kg/s. According to simulation results, it is possible to produce 11,488 kW_e electrical power output in this field. Optimum first and second flashing pressures are determined to be 530 kPa and 95 kPa, respectively. Based on the exergy of the geothermal fluid at reservoir, overall first and second law efficiencies of the power plant are also calculated to be 6.88% and 28.55%, respectively.
机译:利用地热能发电的最重要的循环之一是双闪循环。全世界地热发电总量中约有25%来自双闪式地热发电厂。在本文中,对假设的双闪式地热发电厂进行了性能分析,并检查了该发电厂基本特性的变化。在性能分析中,首先要确定最佳的闪蒸压力,并计算设备基点的能量和火用值。此外,还计算了电厂的第一定律效率和第二定律效率。确定了主要的火用破坏位置,并且在火用流程图中说明了这些损失。为了这些目的,假定在土耳其西部的条件下建造了一个假想的双闪式地热发电厂。将要建造电厂的地热场产生的地流体温度为210℃,质量流量为200 kg / s。根据仿真结果,在该领域中可以产生11488 kW_e的电力输出。最佳的第一和第二闪蒸压力分别确定为530 kPa和95 kPa。根据水库中地热流体的火用能,发电厂的总体第一定律和第二定律效率也分别计算为6.88%和28.55%。

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