Thermodynamic modeling and evaluation of high efficiency heat pipe integrated biomass Gasifier-Solid Oxide Fuel Cells-Gas Turbine systems

被引:38
|
作者
Santhanam, S. [1 ,2 ]
Schilt, C. [1 ]
Turker, B. [1 ]
Woudstra, T. [1 ]
Aravind, P. V. [1 ]
机构
[1] Delft Univ Technol, Energy Technol Sect, Leeghwaterstr, NL-2628 CB Delft, Netherlands
[2] German Aerosp Ctr DLR, Inst Engn Thermodynam, 38-40 Pfaffenwaldring, Stuttgart, Germany
关键词
Solid Oxide Fuel Cell; Gas Turbine; Biomass gasification; Heat pipes; Exergy; POWER-GENERATION SYSTEM; EXERGY ANALYSIS; CYCLE ANALYSIS; STEAM-GASIFICATION; GASIFYING AGENT; FLUIDIZED-BED; PRODUCT GAS; PART; CO2; PERFORMANCE;
D O I
10.1016/j.energy.2016.04.117
中图分类号
O414.1 [热力学];
学科分类号
摘要
This study deals with the thermodynamic modeling of biomass Gasifier-SOFC (Solid Oxide Fuel Cell)-GT (Gas Turbine) systems on a small scale (100 We). Evaluation of an existing biomass Gasifier SOFC-GT system shows highest exergy losses in the gasifier, gas turbine and as waste heat. In order to reduce the exergy losses and increase the system's efficiency, improvements are suggested and the effects are analyzed. Changing the gasifying agent for air to anode gas gave the largest increase in the electrical efficiency. However, heat is required for an allothermal gasification to take place. A new and simple strategy for heat pipe integration is proposed, with heat pipes placed in between stacks in series, rather than the widely considered approach of integrating the heat pipes within the SOFC stacks. The developed system based on a Gasifier-SOFC-GT combination improved with heat pipes and anode gas recirculation, increases the electrical efficiency from approximately 55%-72%, mainly due to reduced exergy losses in the gasifier. Analysis of the improved system shows that operating the system at possibly higher operating pressures, yield higher efficiencies within the range of the operating pressures studied. Further the system was scaled up with an additional bottoming cycle achieved electrical efficiency of 73.61%. (C) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:751 / 764
页数:14
相关论文
共 50 条
  • [21] Evaluation of high temperature gas cleaning options for biomass gasification product gas for Solid Oxide Fuel Cells
    Aravind, P. V.
    de Jong, Wiebren
    PROGRESS IN ENERGY AND COMBUSTION SCIENCE, 2012, 38 (06) : 737 - 764
  • [22] Energetic Performance Analysis of a Gas Turbine Cycle Integrated With Solid Oxide Fuel Cells
    Dincer, Ibrahim
    Rosen, Marc A.
    Zamfirescu, Calin
    JOURNAL OF ENERGY RESOURCES TECHNOLOGY-TRANSACTIONS OF THE ASME, 2009, 131 (03): : 0320011 - 03200111
  • [23] Exergetic performance analysis of a gas turbine cycle integrated with solid oxide fuel cells
    Granovskii, Mikhail
    Dincer, Ibrahim
    Rosen, Marc A.
    PROCEEDINGS OF THE ENERGY SUSTAINABILITY CONFERENCE 2007, 2007, : 47 - 57
  • [24] Thermodynamic Analysis of Solid Oxide Fuel Cell Gas Turbine Systems Operating with Various Biofuels
    Patel, H. C.
    Woudstra, T.
    Aravind, P. V.
    FUEL CELLS, 2012, 12 (06) : 1115 - 1128
  • [25] Fuel utilization effects on system efficiency in solid oxide fuel cell gas turbine hybrid systems
    Oryshchyn, Danylo
    Harun, Nor Farida
    Tucker, David
    Bryden, Kenneth M.
    Shadle, Lawrence
    APPLIED ENERGY, 2018, 228 : 1953 - 1965
  • [26] Thermodynamic modelling of an integrated solid oxide fuel cell and micro gas turbine system for desalination purposes
    Hosseini, Mehdi y
    Dincer, Ibrahim
    Ahmadi, Pouria
    Avval, Hasan Barzegar
    Ziaasharhagh, Masoud
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2013, 37 (05) : 426 - 434
  • [27] Thermodynamic Simulation of a Solid Oxide Fuel Cell Integrated Gas Turbine Cycle Base on Irreversibility Analysis
    Kamkari, Babak
    Aliabadi, Abbas
    Yazdizadeh, Alireza
    Taklifi, Alireza
    2011 PROCEEDINGS OF THE 3RD CONFERENCE ON THERMAL POWER PLANTS (CTPP), 2011,
  • [28] Thermal modeling and efficiency assessment of an integrated biomass gasification and solid oxide fuel cell system
    El-Emam, Rami Salah
    Dincer, Ibrahim
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2015, 40 (24) : 7694 - 7706
  • [29] Thermodynamic, environmental, and exergoeconomic feasibility analyses and optimization of biomass gasifier-solid oxide fuel cell boosting a doable-flash binary geothermal cycle; a novel trigeneration plant
    Hou, Rui
    Zhang, Nachuan
    Gao, Wei
    Chen, Kang
    Liu, Yongqiu
    ENERGY, 2023, 265
  • [30] Performance evaluation of integrated gasification solid oxide fuel cell/gas turbine systems including carbon dioxide capture
    Park, Sung Ku
    Ahn, Ji-Ho
    Kim, Tong Seop
    APPLIED ENERGY, 2011, 88 (09) : 2976 - 2987