GAS TURBINE COMBINED CYCLE DYNAMIC SIMULATION: A PHYSICS BASED SIMPLE APPROACH

被引:0
作者
Guelen, S. Can [1 ]
Kim, Kihyung [1 ]
机构
[1] GE Power & Water, Schenectady, NY 12345 USA
来源
PROCEEDINGS OF THE ASME TURBO EXPO: TURBINE TECHNICAL CONFERENCE AND EXPOSITION, 2013, VOL 4 | 2013年
关键词
LOAD-INCREASING PROCESSES; START-UP; POWER-PLANTS; OPTIMIZATION; DRUM;
D O I
暂无
中图分类号
G40 [教育学];
学科分类号
040101 ; 120403 ;
摘要
This paper describes a simplified physics-based method derived from fundamental relationships to accurately predict the dynamic response of the steam bottoming cycle of a combined cycle power plant to the changes in gas turbine exhaust temperature and flow rate. The method offers two advantages: (1) rapid calculation of various modes of combined cycle transient performance such as startup, shutdown and load ramps for conceptual design and optimization studies; (2) transparency of governing principles and solution methods for ease of use by a wider range of practitioners. Thus, the method facilitates better understanding and dissemination of said studies. All requisite formulas and methods described in the paper are readily amenable to implementation on a computational platform of the reader 's choice.
引用
收藏
页数:13
相关论文
共 50 条
  • [41] A solar micro gas turbine system combined with steam injection and ORC bottoming cycle
    Xiao, Gang
    Chen, Jinli
    Ni, Mingjiang
    Cen, Kefa
    ENERGY CONVERSION AND MANAGEMENT, 2021, 243
  • [42] Proposed Solution for Adaptation of the Block in TPP Bitola using Gas Turbine Combined Cycle
    Dimovski, Blagoj
    Stavreva, Sevde
    Dimitrieska, Cvete
    Andreevski, Igor
    TEM JOURNAL-TECHNOLOGY EDUCATION MANAGEMENT INFORMATICS, 2022, 11 (01): : 164 - 168
  • [43] CONVENTIONAL AND ADVANCED EXERGETIC ANALYSIS FOR THE COMBINED CYCLE OF POWER PLANT WITH GAS TURBINE OF A REFINERY
    Fajardo, Juan
    Guette, Dawing
    Barreto, Deibys
    Cardona, Camilo
    Baldiris, Ildefonso
    PROCEEDINGS OF ASME 2021 INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION (IMECE2021), VOL 8B, 2021,
  • [44] Modeling and control of an interconnected combined cycle gas turbine using fuzzy and ANFIS controllers
    Elhosseini, Mostafa A.
    El Sehiemy, Ragab A.
    Salah, Amgad H.
    Abido, M. A.
    ELECTRICAL ENGINEERING, 2018, 100 (02) : 763 - 785
  • [45] Novel operation strategy for a gas turbine and high-temperature KCS combined cycle
    Du, Yang
    Fan, Gang
    Zheng, Shaoxiong
    Zhao, Pan
    Wang, Jiangfeng
    Dai, Yiping
    ENERGY CONVERSION AND MANAGEMENT, 2020, 217
  • [46] Exergoeconomic and exergoenvironmental analysis of an integrated solar gas turbine/combined cycle power plant
    Bonforte, Giuseppe
    Buchgeister, Jens
    Manfrida, Giampaolo
    Petela, Karolina
    ENERGY, 2018, 156 : 352 - 359
  • [47] Exploration of turbine blade cooling strategies for performance boosting and CO2 emissions reduction of combined cycle with steam injection based gas turbine
    Vadlamudi, Tara Chand
    Kommineni, Ravindra
    Katuru, Bala Prasad
    INTERNATIONAL JOURNAL OF AMBIENT ENERGY, 2020, : 2239 - 2250
  • [48] Dynamic Analysis of a Novel Quadruple Combined Cycle Based on Integrated Solar Tower-Gas Turbine-Supercritical CO2 and Organic Rankine Cycles
    Abbasi, Narges
    Manesh, Mohammad Hasan Khoshgoftar
    Yazdi, Mohsen
    JOURNAL OF ENERGY RESOURCES TECHNOLOGY-TRANSACTIONS OF THE ASME, 2022, 144 (05):
  • [49] Techno-economic evaluation of combined cycle gas turbine and a diabatic compressed air energy storage integration concept
    Kruk-Gotzman, Sylwia
    Ziolkowski, Pawel
    Iliev, Iliya
    Negreanu, Gabriel-Paul
    Badur, Janusz
    ENERGY, 2023, 266
  • [50] Dynamic simulation of a gas turbine for heat recovery at varying load and environment conditions
    Gou, Xiang
    Zhang, Han
    Li, Guangyao
    Cao, Yuhao
    Zhang, Qiyan
    APPLIED THERMAL ENGINEERING, 2021, 195