Selecting the process arrangement for preparing the gas turbine working fluid for an integrated gasification combined-cycle power plant

被引:7
|
作者
Ryzhkov A.F. [1 ]
Gordeev S.I. [1 ]
Bogatova T.F. [1 ]
机构
[1] Ural Federal University, ul. Mira 19, Yekaterinburg
基金
俄罗斯科学基金会;
关键词
air separation unit; chemical equilibrium; gasification plant; integrated gasification combined-cycle power plant; oxygen and air gasification; working fluid preparation system;
D O I
10.1134/S0040601515110075
中图分类号
学科分类号
摘要
Introduction of a combined-cycle technology based on fuel gasification integrated in the process cycle (commonly known as integrated gasification combined cycle technology) is among avenues of development activities aimed at achieving more efficient operation of coal-fired power units at thermal power plants. The introduction of this technology is presently facing the following difficulties: IGCC installations are characterized by high capital intensity, low energy efficiency, and insufficient reliability and availability indicators. It was revealed from an analysis of literature sources that these drawbacks are typical for the gas turbine working fluid preparation system, the main component of which is a gasification plant. Different methods for improving the gasification plant chemical efficiency were compared, including blast air high-temperature heating, use of industrial oxygen, and a combination of these two methods implying limited use of oxygen and moderate heating of blast air. Calculated investigations aimed at estimating the influence of methods for achieving more efficient air gasification are carried out taking as an example the gasifier produced by the Mitsubishi Heavy Industries (MHI) with a thermal capacity of 500 MW. The investigation procedure was verified against the known experimental data. Modes have been determined in which the use of high-temperature heating of blast air for gasification and cycle air upstream of the gas turbine combustion chamber makes it possible to increase the working fluid preparation system efficiency to a level exceeding the efficiency of the oxygen process performed according to the Shell technology. For the gasification plant’s configuration and the GTU working fluid preparation system be selected on a well-grounded basis, this work should be supplemented with technical-economic calculations. © 2015, Pleiades Publishing, Inc.
引用
收藏
页码:796 / 801
页数:5
相关论文
共 50 条
  • [31] Analysis of a combined cycle power plant integrated with a liquid natural gas gasification and power generation system
    Shi, X.
    Agnew, B.
    Che, D.
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART A-JOURNAL OF POWER AND ENERGY, 2011, 225 (A1) : 1 - 11
  • [32] Increased importance of evaporative coolers for gas turbine and combined-cycle power plants
    Kraneis, W.
    VGB PowerTech, 2000, 80 (09): : 22 - 25
  • [33] COOL WATER - 1ST GASIFICATION COMBINED-CYCLE POWER-PLANT
    ALPERT, SB
    TRANSACTIONS OF THE AMERICAN NUCLEAR SOCIETY, 1984, 46 : 3 - 3
  • [34] 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
  • [35] COMBINED-CYCLE POWER-PLANT WITH INTEGRATED COAL-GASIFICATION, CO SHIFT AND CO2 WASHING
    PRUSCHEK, R
    OELJEKLAUS, G
    BRAND, V
    HAUPT, G
    ZIMMERMANN, G
    RIBBERINK, JS
    ENERGY CONVERSION AND MANAGEMENT, 1995, 36 (6-9) : 797 - 800
  • [36] Advanced exergy analysis applied to an externally-fired combined-cycle power plant integrated with a biomass gasification unit
    Soltani, S.
    Yari, M.
    Mahmoudi, S. M. S.
    Morosuk, T.
    Rosen, M. A.
    ENERGY, 2013, 59 : 775 - 780
  • [37] Thermal testing of 255-MW gas turbine of a single-shaft combined-cycle power plant
    Ol'Khovskii G.G.
    Tuz N.E.
    Radin Y.A.
    Mikheev L.A.
    Power Technology and Engineering, 2013, 47 (4) : 280 - 284
  • [38] Exergy analysis of a gas-turbine combined-cycle power plant with precombustion CO2 capture
    Ertesvåg, IS
    Kvamsdal, HM
    Bolland, O
    ENERGY, 2005, 30 (01) : 5 - 39
  • [39] GAS TURBINE DYNAMIC MODEL & CONTROL IN INTEGRATED GASIFICATION COMBINED CYCLE APPLICATION
    Parulekar, Prashant S.
    Gurgenci, Hal
    PROCEEDINGS OF THE ASME TURBO EXPO 2010, VOL 3, 2010, : 53 - 66
  • [40] THE ANALYSIS OF INITIAL PARAMETERS OF STEAM IN THE COMBINED-CYCLE PLANT WITH HIGH TEMPERATURE GAS TURBINE
    Uvarov, Artem
    Antonova, Aleksandra
    Vorobjev, Aleksandr
    SMART GRIDS 2015, 2015, 37