Lattice Boltzmann Modeling of Methane Steam Reforming Reactions in Solid Oxide Fuel Cells

سال انتشار: 1399
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 232

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شناسه ملی سند علمی:

JR_IJHFC-7-1_005

تاریخ نمایه سازی: 1 شهریور 1400

چکیده مقاله:

The present study evaluated the rate of methane steam reforming (MSR) in a solid oxide fuel cell (SOFC). In this regard, a numerical model is applied to investage the effects of different parameters on the reactants concentration and temperature distributions in the SOFCs. The developed model is based on the Lattice Boltzmann method (D۲Q۹) and validated with experimental results. Parametric effects, including current density, anode porosity, steam to carbon ratio (S/C), and Reynolds number of the inlet flow in the anode channel, are surveyed as a new parameter. Also, the results of reactant concentrations are illustrated in two-dimensions. These results showed that the porosity and Reynolds number of flow have the lowest and highest impact on the reaction rate of MSR, respectively. The lowest MSR rate at the center of the SOFC happened when the Reynolds number of the input flow equals ۵, and the highest MSR rate occured when the Reynolds number is ۱۵ or the steam to carbon ratio equaled to ۱.

نویسندگان

Mehdi Rahimi Takami

Department of Mechanical Engineering, Babol Noshirvani University of Technology, Babol, Iran

Davood Domairry Ganji

Department of Mechanical Engineering, Babol Noshirvani University of Technology, Babol, Iran

Mojtaba Aghajani Delavar

Department of Mechanical Engineering, Babol Noshirvani University of Technology, Babol, Iran

Shahriar Bozorgmehri

Renewable Energy Department, Niroo Research Institute (NRI), Tehran, Iran

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  • Xinhai X, Peiwen L, Yuesong S. Small-scale reforming of diesel ...
  • Lin J, Trabold TA, Walluk MR, Smith DF. Autothermal reforming ...
  • Boaro M, Aricò AS. Advances in Medium and High Temperature ...
  • Kendall K, Kendall M. High-Temperature Solid Oxide Fuel Cells for ...
  • Song C. Fuel processing for low-temperature and high-temperature fuel cells: ...
  • Krumpelt M, Krause TR, Carter JD, Kopasz JP, Ahmed S. ...
  • Takeguchi T, Kani Y, Yano T, Kikuchi R, Eguchi K, ...
  • Abdenebi H, Zitouni B, Ben Moussa H, Haddad D. Thermal ...
  • Lanzini A, Leone P. Experimental investigation of direct internal reforming ...
  • Mogensen D, Grunwaldt JD, Hendriksen P V., Dam-Johansen K, Nielsen ...
  • Thallam Thattai A, van Biert L, Aravind P V. On ...
  • Park K, Lee S, Bae G, Bae J. Performance analysis ...
  • Sohn S, Baek SM, Nam JH, Kim CJ. Two-dimensional micro/macroscale ...
  • Schluckner C, Subotić V, Lawlor V, Hochenauer C. Three-dimensional numerical ...
  • Farnak M, Esfahani JA, Bozorgmehri S. An experimental design of ...
  • Fan L, Van Biert L, Thallam Thattai A, Verkooijen AHM, ...
  • Park J, Li P, Bae J. Analysis of chemical, electrochemical ...
  • Ahmed K, Fӧger K. Analysis of equilibrium and kinetic models ...
  • Chalusiak M, Wrobel M, Mozdzierz M, Berent K, Szmyd JS, ...
  • van Biert L, Godjevac M, Visser K, Aravind P V. ...
  • Wang S, Worek WM, Minkowycz WJ. Performance comparison of the ...
  • Joshi AS, Grew KN, Peracchio AA, Chiu WKS. Lattice Boltzmann ...
  • Xu H, Dang Z, Bai BF. Numerical simulation of multispecies ...
  • Paradis H, Andersson M, Sundén B. Lattice Boltzmann modeling of ...
  • Joshi AS, Grew KN, Izzo JR, Peracchio AA, Chiu WKS. ...
  • Paradis H, Sundén B. Evaluation of lattice boltzmann method for ...
  • Hamadou D Ben, Elleuch A, Halouani K. LATTICE BOLTZMANN PROGRESSIVE ...
  • Xu H, Dang Z. Lattice Boltzmann modeling of carbon deposition ...
  • Xu H, Dang Z, Bai BF. Electrochemical performance study of ...
  • Yahya A, Rabhi R, Dhahri H, Slimi K. Numerical simulation ...
  • Chiu WKS, Joshi AS, Grew KN. Lattice Boltzmann model for ...
  • Delavar MA, Farhadi M, Sedighi K. Numerical simulation of direct ...
  • Ajarostaghi SSM, Delavar MA, Poncet S. Thermal mixing, cooling and ...
  • Mehrizi AA, Farhadi M, Sedighi K, Delavar MA. Effect of ...
  • Ivanov P. Thermodynamic modeling of the power plant based on ...
  • Brus G, Szmyd JS. Numerical modelling of radiative heat transfer ...
  • Wang Y, Zhan R, Qin Y, Zhang G, Du Q, ...
  • Poling BE, Prausnitz JM, O’connell JP, others. The properties of ...
  • Aydın Ö, Kubota A, Tran DL, Sakamoto M, Shiratori Y. ...
  • Albrecht KJ, Braun RJ. The effect of coupled mass transport ...
  • Hajimolana SA, Hussain MA, Daud WMAW, Soroush M, Shamiri A. ...
  • Mohamad AA. Lattice Boltzmann Method. vol. ۷۰. Springer; ۲۰۱۱ ...
  • Sabri E. Fluid flow through packed columns. Chem Eng Prog ...
  • Ni M. Modeling of SOFC running on partially pre-reformed gas ...
  • Ni M, Leung MKH, Leung DYC. Parametric study of solid ...
  • Menon V, Banerjee A, Dailly J, Deutschmann O. Numerical analysis ...
  • Bove R, Ubertini S. Modeling solid oxide fuel cells: methods, ...
  • Chan SH, Khor KA, Xia ZT. Complete polarization model of ...
  • Hernández-Pacheco E, Singh D, Hutton PN, Patel N, Mann MD. ...
  • Ni M, Leung DYC, Leung MKH. Modeling of methane fed ...
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