Thermal modeling and simulation of a single-flash geothermal power plant involving non-condensable gas: a case study of Kamojang geothermal field in Garut, West Java, Indonesia

被引:0
|
作者
Candra Mecca Sufyana
Fiki Taufik Akbar
Wahyu Srigutomo
机构
[1] Institut Teknologi Bandung,Physics of Earth and Complex System, Physics Department, Faculty of Mathematics and Natural Sciences
来源
关键词
Single-flash geothermal power plant; Thermodynamic efficiency; Non-condensable gases; Gas removal system; Software-based interface;
D O I
暂无
中图分类号
学科分类号
摘要
The presence of non-condensable gases (NCGs) in a geothermal fluid disrupts the vacuum process in the condenser, reducing turbine efficiency and decreasing the total power output of the geothermal power plant (GPP). Therefore, to optimize the thermodynamic efficiency of a GPP, NCGs should be removed using a gas removal system. Since there is a substantial lack of design and simulation software for a GPP including NCG removal alternatives, in this study, we aimed to model and develop a software-based interface to simulate mass and energy balance involving an NCG fraction in a single-flash GPP as well as examine the thermodynamic performance of the gas removal system, which is the most important step in the planning and designing phase of a GPP. This software was validated using outputs of Kamojang GPP Units 2, 3, and 4 located at Kamojang geothermal field, Garut, West Java, Indonesia. Units 2 and 3 use two ejectors which are installed in series, and Unit 4 utilizes a hybrid system (HS) that is mostly a combination of vacuum pumps and a steam jet ejector (SJE). Our results showed that Kamojang GPP Units 2 and 3 generate 55.295 MW of power with an absolute error of 0.53%, whereas Unit 4 generates 60.218 MW of power with a 0.36% absolute error concerning the field data. These results correspond with the expected minimum error; therefore, our model’s parameters are considered valid and can be used for simulation. We found that using the simulation, the total steam saved by the HS at Kamojang GPP Units 2 and 3 was 534 kW. Furthermore, the net power production was reduced by 1.6% for the HS and 2.03% for the SJE with every 1% increase in the NCG fraction. The power requirement of the vacuum pumps remained less than the power generated by the motive steam which the ejector requires to dispose of the same amount of NCG, indicating that Kamojang GPP Units 2 and 3 will be more efficient if an HS is used.
引用
收藏
相关论文
共 9 条
  • [1] Thermal modeling and simulation of a single-flash geothermal power plant involving non-condensable gas: a case study of Kamojang geothermal field in Garut, West Java']Java, Indonesia
    Sufyana, Candra Mecca
    Akbar, Fiki Taufik
    Srigutomo, Wahyu
    GEOTHERMAL ENERGY, 2023, 11 (01)
  • [2] Preliminary Analysis of Single-Flash Geothermal Power Plant by Using Exergy Method: A Case Study from Ulubelu Geothermal Power Plant in Indonesia
    Alimuddin
    Tambunan, Armansyah H.
    Machfud
    Novianto, Andi
    INTERNATIONAL JOURNAL OF RENEWABLE ENERGY RESEARCH, 2018, 8 (03): : 1685 - 1696
  • [3] A single flash integrated gas turbine geothermal power plant with non condensable gas combustion
    Bidini, G
    Desideri, U
    Di Maria, F
    GEOTHERMICS, 1999, 28 (01) : 131 - 150
  • [4] Effect of Non-Condensable Gases on geothermal power plant performance. Case study: Kizildere Geothermal Power Plant-Turkey
    Gokcen, Gulden
    Yildirim, Nurdan
    INTERNATIONAL JOURNAL OF EXERGY, 2008, 5 (5-6) : 684 - 695
  • [5] Intermediate pressure reboiling in geothermal flash plant for increased power production and more effective non-condensable gas abatement
    Novotny, Vaclav
    Vitvarova, Monika
    Spale, Jan
    Jakobsen, Jana Poplsteinova
    ENERGY REPORTS, 2020, 6 : 20 - 27
  • [6] Exploring chemical disposal options for non-condensable gasses in geothermal power plants: A case study of Kizildere geothermal field (Türkiye)
    Haklidir, Fusun S. Tut
    Cetin, Raziye Senguen
    Kilincarslan, Sanem
    GEOTHERMICS, 2024, 122
  • [7] Economic and Thermodynamic Analysis for Preliminary Design of Dry Steam Geothermal Power Plant (GPP) with Multifarious Gas Removal System (GRS) in Kamojang, West Java']Java, Indonesia
    Pranadi, Aloysius Damar
    Sihana
    Suryopratomo, Kutut
    Salis, Fiki Rahmatika
    5TH ITB INTERNATIONAL GEOTHERMAL WORKSHOP (IIGW2016), 2016, 42
  • [8] Economic and Thermodynamic Analysis for Preliminary Design of Dry Steam Geothermal Power Plant (GPP) with Multifarious Gas Removal System (GRS) in Kamojang, West Java, Indonesia
    Pranadi, Aloysius Damar
    Sihana
    Suryopratomo, Kutut
    Salis, Fiki Rahmatika
    IOP Conference Series: Earth and Environmental Science, 2016, 42 (01):
  • [9] Surface and Subsurface Fracture Zones Modeling Using Automatic Lineament Analysis and Geostatistical Method, with Case Study of Wayang Windu Geothermal Field, West Java']Java, Indonesia
    Heriawan, Mohamad Nur
    Hafizsyah, Rifqy Adwin
    Hanunah, Jihan Syifa
    Hede, Arie Naftali Hawu
    Malik, Dwiyogarani
    ITB INTERNATIONAL GEOTHERMAL WORKSHOP, 2020, 417