An update of second law analysis and optimization of a single-flash geothermal power plant in Dieng, Indonesia

被引:13
|
作者
Rudiyanto, Bayu [1 ]
Bahthiyar, Muhamad Aries [2 ]
Pambudi, Nugroho Agung [3 ]
Widjonarko [4 ]
Hijriawan, Miftah [5 ]
机构
[1] Politekn Negeri Jember, Dept Renewable Energy Engn, Energy Engn Lab, Jember 68121, Indonesia
[2] Politekn Negeri Jember, Grad Sch Dept Renewable Energy Engn, Jember 68121, Indonesia
[3] Univ Sebelas Maret, Energy Soc & Lab Mech Engn Educ, Jl Ir Sutami 36A, Surakarta 57126, Indonesia
[4] Univ Jember, Dept Elect Engn, Jl Kalimantan 37 Kampus Tegalboto, Jember 68121, Indonesia
[5] Univ Sebelas Maret, Grad Programme Mech Engn, Jl Ir Sutami 36A, Surakarta 57126, Indonesia
关键词
Thermodynamic; Single-flash; Exergy; Power plant; Optimization; EXERGETIC ANALYSIS; PERFORMANCE;
D O I
10.1016/j.geothermics.2021.102212
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Dieng geothermal power plant is one of the Geothermal plants located in Indonesia with a total estimated potential of 400 MWe. The reservoir is characterized by water-dominated with 240 to 333 degrees C temperature. Recently, the company operated one unit of single-flash system with a capacity of 60 MW. To improve its capacity, unit expansion of unit 2 and 3 are designed with each capacity of 60 MW. Apart from this expansion, another effort is optimizing the existing plant. It can be conducted with a thermodynamic approach using energy and exergy analysis. Therefore, this study aims to evaluate and optimize the existing geothermal power plant using energy and exergy analysis. With the latest data obtained, the results show that the exergy value of production wells is around 106,515 kW. The electricity production with the system is around 40,680 kW, resulting in an exergy efficiency of about 38.19%. Furthermore, the optimization is carried out on the turbine because it shows the greatest irreversibility of 11,217 kW. Optimization is done by varying the incoming turbine pressure. These results indicate that higher inlet pressure increases irreversibility and lowers energy efficiency. Furthermore, the optimum inlet turbine pressure is achieved at 5.5 bar with the maximum change depending on the ambient temperature.
引用
收藏
页数:9
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