ELECTRIC POWER GENERATION FROM COMBUSTION IN POROUS MEDIA

被引:10
|
作者
Bubnovich, Valeri [1 ]
Martin, Pedro San [1 ]
Henriquez-Vargas, Luis [1 ]
Orlovskaya, Nina [2 ]
Gonzalez-Rojas, Hernan A. [3 ]
机构
[1] Univ Santiago Chile, Dept Chem Engn, 3363 B OHiggins, Santiago, Chile
[2] Univ Cent Florida, Dept Mech & Aerosp Engn, 4000 Cent Florida Blvd, Orlando, FL 32816 USA
[3] Univ Politecn Cataluna, ETSEIB, Dept Ingn Mecan, Tecnol Fabricac, Av Diagonal 647, E-08028 Barcelona, Spain
关键词
energy conversion; filtration combustion; thermoelectricity; VELOCITY FILTRATION COMBUSTION; SUPER-ADIABATIC COMBUSTION; PACKED-BED; THEORETICAL-ANALYSIS; FLAME STABILIZATION; BURNER; WAVES; CONVERSION; ELEMENT; SYSTEM;
D O I
10.1615/JPorMedia.v19.i10.10
中图分类号
O414.1 [热力学];
学科分类号
摘要
Combustion of lean air/fuel mixtures in an inert porous medium provides an efficient way to convert chemical energy of hydrocarbons into thermal energy. The porous medium effectively redistributes the heat allowing the reacting mixture to be preheated before the combustion front. For a lean propane/air mixture (equivalence ratio Phi similar to 0.6), the combustion front is steady and the combustion temperature is subadiabatic. At lower equivalence ratios the heat wave in the porous media and the combustion front can move synchronously downstream developing superadiabatic temperatures. This superadiabatic effect allows to operate at the range of ultralean mixtures (Phi similar to 0.1). Thermal energy generated by the combustion process can be converted into electricity by thermoelectric modules (TEMs). In this work, a cylindrical porous burner is designed to absorb the heat of combustion of lean propane/air mixtures. The burner is inserted in a rectangular steel block. The surface of the block is covered by a set of operating TEMs. Confining the combustion front is stabilized by using porous media with different pore sizes. Temperatures are recorded in different regions of the burner by using surface and immersion thermocouples. Adjusting the equivalence ratio, the flow rate of the gaseous mixture, the properties of the porous media, and the TEM characteristics, a quasi-static burn rate is achieved with the surrounding surface at the nominal temperatures required by the TEMs. The maximum electrical power of 9.42 W and the overall conversion efficiency of 2.93% are reached with a voltage of 5.93 V and a current of 1.59 A using a setup of four TEMs electrically connected in series.
引用
收藏
页码:841 / 851
页数:11
相关论文
共 50 条
  • [1] Numerical study of turbulent porous media combustion coupled with thermoelectric generation in a recuperative reactor
    Donoso-Garcia, P.
    Henriquez-Vargas, L.
    ENERGY, 2015, 93 : 1189 - 1198
  • [2] Micro combustion in a porous media for thermophotovoltaic power generation
    Bani, Stephen
    Pan, Jianfeng
    Tang, Aikun
    Lu, Qingbo
    Zhang, Yi
    APPLIED THERMAL ENGINEERING, 2018, 129 : 596 - 605
  • [3] Perovskite catalysts enhanced combustion on porous media
    Robayo, Manuel D.
    Beaman, Ben
    Hughes, Billy
    Delose, Brittany
    Orlovskaya, Nina
    Chen, Ruey-Hung
    ENERGY, 2014, 76 : 477 - 486
  • [4] Hollow spheres as inert packed bed from lean to rich combustion in porous media
    Fierro, Matias
    Gutierrez, Cristobal
    Jovicic, Vojislav
    Toledo, Mario
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2022, 195
  • [5] Trends in modeling of porous media combustion
    Mujeebu, M. Abdul
    Abdullah, M. Zulkifly
    Mohamad, A. A.
    Abu Bakar, M. Z.
    PROGRESS IN ENERGY AND COMBUSTION SCIENCE, 2010, 36 (06) : 627 - 650
  • [6] Combustion in porous media and its applications - A comprehensive survey
    Mujeebu, M. Abdul
    Abdullah, M. Z.
    Abu Bakar, M. Z.
    Mohamad, A. A.
    Muhad, R. M. N.
    Abdullah, M. K.
    JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2009, 90 (08) : 2287 - 2312
  • [7] Syngas production frorn polyethylene and biogas in porous media combustion
    Gonzalez, Hans
    Caro, Sebastian
    Toledo, Mario
    Olguin, Hernan
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2018, 43 (09) : 4294 - 4304
  • [8] Analysis of thermal energy conversion into electric power inside a porous media burner
    Bubnovich, V. I.
    Maiza, M. F.
    Henriquez-Vargas, L. A.
    THEORETICAL FOUNDATIONS OF CHEMICAL ENGINEERING, 2012, 46 (06) : 666 - 672
  • [9] Asymptotic approximation for counterflow combustion in porous media
    Chapiro, Grigori
    de Souza, Aparecido Jesuino
    APPLICABLE ANALYSIS, 2016, 95 (01) : 63 - 77
  • [10] Laminar flow with combustion in inert porous media
    Coutinho, Jose E. A.
    de Lemos, Marcelo J. S.
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2012, 39 (07) : 896 - 903