Applications of porous materials in combustion systems: A comprehensive and state-of-the-art review

被引:91
作者
Gharehghani, Ayat [1 ]
Ghasemi, Kasra [1 ]
Siavashi, Majid [1 ]
Mehranfar, Sadegh [1 ]
机构
[1] Iran Univ Sci & Technol, Sch Mech Engn, Tehran 1684613114, Iran
关键词
Porous media combustion; Emission reduction; Lean burn limit; Flame stability; Power density; LIQUEFIED PETROLEUM GAS; HEAT-TRANSFER ENHANCEMENT; PREMIXED H-2-AIR COMBUSTION; DIESEL-ENGINES PERFORMANCE; SUPER-ADIABATIC COMBUSTION; KEROSENE PRESSURE STOVE; LIQUID-FUEL COMBUSTION; METHANE-AIR COMBUSTION; LOW CALORIFIC GAS; FILTRATION COMBUSTION;
D O I
10.1016/j.fuel.2021.121411
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Porous materials have been extensively used in various engineering applications, due to their promising thermal characteristics. Extensions of lean-burn limits as well as the low levels of pollutant emissions are the main advantages of using porous materials in combustion systems. Also, an enhancement in burning rate, flame stability and power density are the other considerable effects of porous media combustion (PMC). In the last two decades, many investigations were conducted to evaluate the practicability and performance of PMC. So, in the current study, a comprehensive review of previous researches in the literature is provided to have a better outlook of porous media capabilities in combustion applications. For this purpose, different applications of porous media in combustion systems, including porous burners, micro-combustors, internal combustion engines, hydrogen production reactors and more, are reviewed, and the recent utilization and developments in PCM systems are explained. Experimental, analytical and numerical published studies are surveyed in detail and categorized according to their objectives to provide better accessibility to a certain subject for the reader.
引用
收藏
页数:31
相关论文
共 311 条
[1]   Effect of oxygen enriched air on porous radiant burner performance and NO emissions [J].
Abdelaal, M. M. ;
El-Riedy, M. K. ;
El-Nahas, A. M. .
EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2013, 45 :163-168
[2]   A novel emulsion fuel containing aqueous nano cerium oxide additive in diesel-biodiesel blends to improve diesel engines performance and reduce exhaust emissions: Part II - Exergetic analysis [J].
Aghbashlo, Mortaza ;
Tabatabaei, Meisam ;
Khalife, Esmail ;
Najafi, Bahman ;
Mirsalim, Seyed Mostafa ;
Gharehghani, Ayat ;
Mohammadi, Pouya ;
Dadak, Ali ;
Shojaei, Taha Roodbar ;
Khounani, Zahra .
FUEL, 2017, 205 :262-271
[3]   Lean flammability limits for stable performance with a porous burner [J].
Akbari, M. H. ;
Riahi, P. ;
Roohi, R. .
APPLIED ENERGY, 2009, 86 (12) :2635-2643
[4]   The role of flow-field layout on the conditioning of a proton exchange membrane fuel cell [J].
Alaefour, Ibrahim ;
Shahgaldi, Samaneh ;
Ozden, Adnan ;
Li, Xianguo ;
Hamdullahpur, Feridun .
FUEL, 2018, 230 :98-103
[5]  
Arrieta C. E., 2019, Journal of Physics: Conference Series, V1257, DOI 10.1088/1742-6596/1257/1/012018
[6]   PROPAGATION OF PREMIXED GASEOUS EXPLOSION FLAMES IN POROUS-MEDIA [J].
BABKIN, VS ;
KORZHAVIN, AA ;
BUNEV, VA .
COMBUSTION AND FLAME, 1991, 87 (02) :182-190
[7]   Optimal scenario design of steam-assisted gravity drainage to enhance oil recovery with temperature and rate control [J].
Baghernezhad, Danial ;
Siavashi, Majid ;
Nakhaee, Ali .
ENERGY, 2019, 166 :610-623
[8]   Adiabatic premixed combustion in a gaseous fuel porous inert media under high pressure and temperature: Novel flame stabilization technique [J].
Bakry, Ayman ;
Al-Salaymeh, Ahmed ;
Al-Muhtaseb, Ala'a H. ;
Abu-Jrai, Ahmad ;
Trimis, D. .
FUEL, 2011, 90 (02) :647-658
[9]   Numerical investigation of key parameters of the porous media combustion based Micro-Thermophotovoltaic system [J].
Bani, Stephen ;
Pan, Jianfeng ;
Tang, Aikun ;
Lu, Qingbo ;
Zhang, Yi .
ENERGY, 2018, 157 :969-978
[10]   Micro combustion in a porous media for thermophotovoltaic power generation [J].
Bani, Stephen ;
Pan, Jianfeng ;
Tang, Aikun ;
Lu, Qingbo ;
Zhang, Yi .
APPLIED THERMAL ENGINEERING, 2018, 129 :596-605