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Energy and exergy analysis of dry-steam geothermal power plant: Case study in kamojang geothermal power plant unit 2

机译:干蒸汽地热发电厂的能量和火用分析:以卡莫江地热发电厂2号机组为例

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The Government of Indonesia is committed to realize a policy of 35,000 Megawatt (MW) of an additional supply of electricity within 5 years (2014-2019). The projection of this capacity is largely supported by fossil fuel power plants and a small portion of renewable energy. One of the renewable energy which currently has great potential in Indonesia is the geothermal. Therefore, improving the capacity of geothermal is needed to support the policy. The Kamojang is one of the largest geothermal power plant in Indonesia with an installed capacity of 235 MW from 5 generating units. The purposes of this research is to calculate the energy and exergy analysis at Kamojang geothermal power plant. To improve the capacity, exergy analysis can be used by employing the thermodynamic method. In this research, unit 2 of Kamojang's plant is employed. The analysis was examined by using the Engineering Equation Solver (EES) code. The results show the first law of efficiency was calculated at 19.03% and the second law of efficiency at 40.31%.
机译:印度尼西亚政府承诺在5年内(2014-2019年)实现35,000兆瓦(MW)的额外电力供应政策。对这种能力的预测主要由化石燃料发电厂和一小部分可再生能源支持。目前在印度尼西亚具有巨大潜力的可再生能源之一是地热。因此,需要提高地热能以支持该政策。 Kamojang是印度尼西亚最大的地热发电厂之一,由5个发电机组组成的装机容量为235 MW。本研究的目的是计算Kamojang地热发电厂的能量和火用分析。为了提高容量,可以通过采用热力学方法来使用火用分析。在这项研究中,采用了Kamojang工厂的2号机组。通过使用工程方程求解器(EES)代码检查分析。结果表明,效率的第一定律为19.03%,效率的第二定律为40.31%。

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