4.7 Article

Effects of porosity and multilayers of porous medium on the hydrogen-fueled combustion and micro-thermophotovoltaic

期刊

RENEWABLE ENERGY
卷 174, 期 -, 页码 391-402

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.renene.2021.04.108

关键词

Micro-thermophotovoltaic system; Porous medium combustion; Porosity; Multi-porous-medium-layers; Efficiency

资金

  1. Young Scientific and Technological Talents in Colleges and Universities of Guizhou Province [KY[2021]094]
  2. Guizhou Provincial Fund [ZK[2021]276]
  3. Talent Platform of Science and Technology Cooperation of Guizhou [[2016]5103]
  4. Special Post Fund of Guizhou University [[2020]14]
  5. Breeding Program of Guizhou University [[2019]21]

向作者/读者索取更多资源

The study found that a small porosity of porous medium can improve flame stability and heat transfer, but has adverse effects on component flow and flame propagation. The use of multi-PM-layers helps balance the opposing effects on fluidity and thermal performance, leading to higher combustion efficiency and radiation temperature.
The premixed H-2/air combustion with varied porosity of porous medium (PM) is experimentally and numerically studied. The influences of porosity and arrangement of PM as well as the effects of multi PM-layers on combustion characteristics and energy conversion are comprehensively investigated. The results indicate that a small porosity of porous medium is beneficial to improve flame stability and heat transfer, while it is adverse to the component flow and flame propagation. For the combustor inserted with multi-PM-layers, the larger-small porosities setting balances their opposing effects on the fluidity and the thermal performance, resulting in higher combustion efficiency and radiation temperature. With the increase of flow rate, effects of PM layout and porosity on combustion and heat transfer are remarkably enhanced. Furthermore, the radiation power of the micro thermophotovoltaic (TPV) system is significantly improved with the increase of radiation temperature. It is found that the combustor inserted with three PM layers (porosity p = 0.95 + 0.9+0.85) achieves a high electrical power output and system efficiency, which is more appropriate for the application of micro TPV or micro power generator. It contributes to chemical energy release and heat transmission for further utilization. (C) 2021 Elsevier Ltd. All rights reserved.

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