A parametric study on thermodynamic performance of a SOFC oriented hybrid energy system

被引:44
作者
Inac, Selcuk [1 ]
Unuerdi, Salih Ozen [2 ]
Midilli, Adnan [3 ]
机构
[1] TUBITAK Marmara Res Ctr, Energy Inst, POB 21, TR-41470 Gebze, Kocaeli, Turkey
[2] Gebze Tech Univ, Fac Engn, Dept Mech Engn, TR-41400 Gebze, Kocaeli, Turkey
[3] Recep Tayyip Erdogan Univ, Fac Engn, Dept Mech Engn, Div Energy, Fener Campus, TR-53100 Rize, Turkey
关键词
Hydrogen production; Biogas production; SOFC; PEM electrolyses; OXIDE FUEL-CELL; TRIGENERATION SYSTEM; SOLAR-ENERGY; EXERGY; POWER; OPTIMIZATION; RECOVERY; HYDROGEN; WASTE; PLANT;
D O I
10.1016/j.ijhydene.2019.01.247
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
In this paper, a parametric study of the performance of a SOFC system for several types of supplied fuels is carried out. A SOFC system which is assisted by some energy resources, namely biomass, solar energy and natural gas, i.e. methane, is designed in order to realize this study. This system consists of four main components which are Solid Oxide Fuel Cell (SOFC), Proton Exchange Membrane Electrolyser (PEME), Photovoltaic system (PV), and Anaerobic Digester for biogas production (AD). The system is designed by considering three fundamental operation modes which are day-time (Ml), night-time (M2), and winter-time (M3), in accordance with the duration of solar irradiation period. In order to evaluate the performance of the system, comprehensive energy and exergy analyses are performed, as major system parameters are changed for the operation modes considered. In this study, maximum total energy and exergy efficiency values of 0.60 and 0.49, respectively, are achieved when the overall energy and exergy performance of the system is evaluated, at 5500 A/m(2) current density for M3 operation mode among the three operation modes considered. Finally, the maximum net electrical energy and exergy efficiencies are achieved for 633 degrees C SOFC fuel inlet temperature and 8000 A/m(2) current density, in this study. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:10043 / 10058
页数:16
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[1]   Thermodynamic modeling and multi-objective evolutionary-based optimization of a new multigeneration energy system [J].
Ahmadi, Pouria ;
Dincer, Ibrahim ;
Rosen, Marc A. .
ENERGY CONVERSION AND MANAGEMENT, 2013, 76 :282-300
[2]   Development and assessment of an integrated biomass-based multi-generation energy system [J].
Ahmadi, Pouria ;
Dincer, Ibrahim ;
Rosen, Marc A. .
ENERGY, 2013, 56 :155-166
[3]   Performance analysis of a co-generation system using solar energy and SOFC technology [J].
Akikur, R. K. ;
Saidur, R. ;
Ping, H. W. ;
Ullah, K. R. .
ENERGY CONVERSION AND MANAGEMENT, 2014, 79 :415-430
[4]   Integrated an innovative energy system assessment by assisting solar energy for day and night time power generation: Exergetic and Exergo-economic investigation [J].
Akrami, Ehsan ;
Gholami, Aslan ;
Ameri, Mohammad ;
Zandi, Majid .
ENERGY CONVERSION AND MANAGEMENT, 2018, 175 :21-32
[5]   Energetic and exergetic studies of a multigenerational solar-geothermal system [J].
Al-Ali, M. ;
Dincer, I. .
APPLIED THERMAL ENGINEERING, 2014, 71 (01) :16-23
[6]   Energy and exergy analyses of a biomass trigeneration system using an organic Rankine cycle [J].
Al-Sulaiman, Fahad A. ;
Dincer, Ibrahim ;
Hamdullahpur, Feridun .
ENERGY, 2012, 45 (01) :975-985
[7]   Exergy analysis of an integrated solid oxide fuel cell and organic Rankine cycle for cooling, heating and power production [J].
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Dincer, Ibrahim ;
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JOURNAL OF POWER SOURCES, 2010, 195 (08) :2346-2354
[8]  
[Anonymous], EFC 2011
[9]  
[Anonymous], [No title captured]
[10]  
[Anonymous], INT J HYDROG ENERGY