4.7 Article

Effect of a crossed-semicircular-plate on thermal performance of micro-combustor fueled by premixed hydrogen-air mixture

期刊

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY
卷 47, 期 39, 页码 17442-17453

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ijhydene.2022.03.212

关键词

Micro-combustor; Crossed semicircular plate; Outer wall temperature; Exergy efficiency; Optimization design

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This article presents a novel crossed semicircular plate to enhance the thermal efficiency of a micro-combustor. The effects of various design parameters on the thermal performance of the micro-combustor were investigated, and the findings provide important guidance for the design and optimization of micro-combustors.
A novel crossed semicircular plate has been presented to enhance the thermal efficacy of a micro-combustor. A whirling stream can be generated when the fuel-air mixture is passed around the plate, which boosts the turbulence intensity and residence time of combustion gas. The heat transfer capacity from the flame to the outer wall of the micro-combustor can be promoted by heat conduction of the plate. Moreover, the plate also plays the role of preheating the hydrogen-air mixture. Effects of the design parameters including the mounting position, crossing angle, thickness and thermal conductivity of the plate and the mass flow rate on the thermal performance of a cylindrical micro-combustor with the plate fueled with premixed hydrogen-air mixture were numerically investigated. The findings show the outer wall temperature decreases with the increase of the distance from the inlet to the plate and increases with the increase of the crossing angle, thickness and thermal conductivity of the plate. The maximum outer wall temperature of 1259 K is obtained at a distance of 7 mm, the crossing angle of 120 degrees and the thickness of 0.5 mm. This study offers a conceptual direction for the design and optimization of a micro-combustor. (c) 2022 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.

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