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Thermodynamic assessment of gas removal systems for single-flash geothermal power plants

机译:单闪式地热发电厂除气系统的热力学评估

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Geothermal fluids contain non-condensable gases (NCGs) at various amounts. NCGs flow to a conventional geothermal power plant (GPP) with steam phase and should be withdrawn from the condenser by a gas removal system to prevent increase in condenser pressure and consequently decrease in power generation. Therefore, to remove NCGs from the system is critical especially at high NCG fractions. In this study, the net power output and specific steam consumption of a single-flash GPP is evaluated depending on the separator pressure, NCG fraction and wet bulb temperature of the environment, and three different conventional gas removal options which are two-stage steam jet ejector system, two-stage hybrid system and two-stage compressor system. A simulation code is written in EES to model the plant for each option. The model uses the data of Kizildere Geothermal Power Plant (KGPP) - Turkey, which is a single-flash plant with extremely high NCG fraction, to allow a comparison between the results of the modelling and the operational data of an actual single-flash GPP. Under given conditions, thermodynamic analysis resulted that NCG fraction is the most significant factor on GPP performance and the compressor system is the most efficient and robust option where the influence of the NCG fraction is limited.
机译:地热流体包含各种量的不可凝气体(NCG)。 NCG以蒸汽相流向常规地热发电厂(GPP),应通过除气系统将其从冷凝器中抽出,以防止冷凝器压力升高并因此减少发电量。因此,从系统中删除NCG至关重要,尤其是在NCG比例较高的情况下。在这项研究中,根据分离器压力,环境的NCG分数和湿球温度以及三种不同的传统除气选项(两级蒸汽喷射)评估了单闪GPP的净功率输出和特定蒸汽消耗。喷射器系统,两级混合系统和两级压缩机系统。在EES中编写了一个仿真代码,以对每个选项的工厂进行建模。该模型使用土耳其基兹尔德雷地热发电厂(KGPP)的数据(这是具有非常高的NCG比例的单闪电厂)来进行建模结果与实际单闪GPP的运行数据之间的比较。在给定条件下,热力学分析表明,NCG分数是影响GPP性能的最重要因素,而压缩机系统是NCG分数影响受到限制的最有效和最可靠的选择。

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