Mathematical Modeling - The Impact of Cooling Water Temperature Upsurge on Combined Cycle Power Plant Performance and Operation

被引:1
|
作者
Siswantara, Ahmad Indra [1 ]
Pujowidodo, Hariyotejo [2 ]
Darius, Asyari [3 ]
Gunadi, Gun Gun Ramdlan [4 ]
机构
[1] Univ Indonesia, Dept Mech Engn, Depok 16424, Indonesia
[2] BPP Teknol, Ctr Thermodynam Engine & Prop, Serpong 15314, Indonesia
[3] Univ Darma Husada, Mech Engn Dept, Jakarta, Indonesia
[4] State Univ Jakarta, Mech Engn Dept, Depok 16424, Indonesia
关键词
heat rate; condenser vacuum; power; cooling temperature; FLOW RATE;
D O I
10.1088/1757-899X/316/1/012060
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
This paper presents the mathematical modeling analysis on cooling system in a combined cycle power plant. The objective of this study is to get the impact of cooling water upsurge on plant performance and operation, using Engineering Equation Solver (EES (TM)) tools. Power plant installed with total power capacity of block#1 is 505.95 MWe and block#2 is 720.8 MWe, where sea water consumed as cooling media at two unit condensers. Basic principle of analysis is heat balance calculation from steam turbine and condenser, concern to vacuum condition and heat rate values. Based on the result shown graphically, there were impact the upsurge of cooling water to increase plant heat rate and vacuum pressure in condenser so ensued decreasing plant efficiency and causing possibility steam turbine trip as back pressure raised from condenser.
引用
收藏
页数:8
相关论文
共 50 条
  • [21] Exergoeconomic optimal performance of an irreversible closed Brayton cycle combined cooling, heating and power plant
    Feng, Huijun
    Chen, Lingen
    Sun, Fengrui
    APPLIED MATHEMATICAL MODELLING, 2011, 35 (09) : 4661 - 4673
  • [22] Performance improvement of the combined cycle power plant by intake air cooling using an absorption chiller
    Boonnasa, S.
    Namprakai, P.
    Muangnapoh, T.
    ENERGY, 2006, 31 (12) : 2036 - 2046
  • [23] Performance improvement of the combined cycle power plant by intake air cooling using an absorption chiller
    Department of Energy Technology, King Mongkut's University of Technology Thonburi, Thungkhru, Bangkok 10140, Thailand
    不详
    Energy, 2006, 12 (2036-2046)
  • [24] System modeling and analysis of a combined cycle power plant
    Dev N.
    Samsher S.
    Kachhwaha S.S.
    International Journal of System Assurance Engineering and Management, 2013, 4 (4) : 353 - 364
  • [25] IMPACT OF STARTUP PURGE CREDIT ON COMBINED CYCLE PLANT OPERATION
    Fabricius, Andreas
    Taylor, Mark
    Moelling, David
    PROCEEDINGS OF THE ASME POWER CONFERENCE, 2015, 2016,
  • [26] Energetic and Exergetic Analysis of Combined Cycle Power Plant: Part-1 Operation and Performance
    Almutairi, Abdulrahman
    Pilidis, Pericles
    Al-Mutawa, Nawaf
    ENERGIES, 2015, 8 (12) : 14118 - 14135
  • [27] Modeling and Optimization of a Combined Cooling, Heating and Power Plant System
    Chandan, Vikas
    Anh-Tuan Do
    Jin, Baoduo
    Jabbari, Faryar
    Brouwer, Jack
    Akrotirianakis, Ioannis
    Chakraborty, Amit
    Alleyne, Andrew
    2012 AMERICAN CONTROL CONFERENCE (ACC), 2012, : 3069 - 3074
  • [28] PERFORMANCE DEGRADATION ANALYSIS OF COMBINED CYCLE POWER PLANT UNDER HIGH AMBIENT TEMPERATURE
    Wan, Anping
    Chen, Ting
    THERMAL SCIENCE, 2022, 26 (02): : 1897 - 1906
  • [29] DYNAMIC MODELING AND CONTROL OF A NATURAL GAS COMBINED CYCLE POWER PLANT FOR LOAD-FOLLOWING OPERATION
    Wang, Yifan
    Bhattacharyya, Debangsu
    Turton, Richard
    PROCEEDINGS OF THE 9TH INTERNATIONAL CONFERENCE ON FOUNDATIONS OF COMPUTER-AIDED PROCESS DESIGN, 2019, 47 : 101 - 106
  • [30] Performance Analysis of Composition Tunable Combined Cooling and Power Cycle
    Sun, Xiaocun
    Shu, Gequn
    Shi, Lingfeng
    Tian, Hua
    Wang, Xuan
    Zhang, Yonghao
    Sun, Rui
    Kung Cheng Je Wu Li Hsueh Pao/Journal of Engineering Thermophysics, 2023, 44 (01): : 1 - 7