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Numerical investigations on an improved micro-cylindrical combustor with rectangular rib for enhancing heat transfer

机译:改进的矩形肋微圆柱燃烧室强化传热的数值研究

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A high and uniform wall temperature on micro combustors is desirable for micro-thermophotovoltaic system application. In this work, an improved micro-cylindrical combustor with rectangular rib is developed. Numerical investigations on the combustors with and without rectangular rib are conducted under various H-2 mass flow rates and H-2/air equivalence ratios. Moreover, the effects of dimensionless rib positions and heights on the outer wall temperature of micro combustors are also widely investigated. Results suggest that the improved combustor has a higher and more uniform outer wall temperature distribution under the same inlet condition compared with that of the micro combustor without rectangular rib. It is concluded that the inserted rectangular rib makes a recirculation region, enhancing the heat transfer between the combustor inner wall and burned gas. In addition, among all the investigated geometrical models, the geometrical model with the dimensionless rib position of 5/9 and dimensionless rib height of 0.4 has the highest and most uniform outer wall temperature where the H-2 mass flow rate and H-2/air equivalence ratio are fixed at 5.25 x 10(-7) kg/s and 1.0, respectively. More importantly, the optimum dimensionless rib position is related with the inlet velocity of H-2/air mixture and it is increased with the inlet velocity of H-2/air mixture. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对于微型热光电系统的应用,希望微型燃烧器上的壁温高且均匀。在这项工作中,开发了一种改进的具有矩形肋的微圆柱燃烧器。在各种H-2质量流量和H-2 /空气当量比下,对带有或不带有矩形肋的燃烧器进行了数值研究。此外,无因次肋的位置和高度对微型燃烧器外壁温度的影响也被广泛研究。结果表明,与没有矩形肋的微型燃烧器相比,改进的燃烧器在相同的进气条件下具有更高,更均匀的外壁温度分布。结论是,插入的矩形肋形成了一个再循环区域,从而增强了燃烧器内壁与燃烧气体之间的热传递。此外,在所有研究的几何模型中,无因次肋位置为5/9,无因次肋高度为0.4的几何模型在H-2质量流量和H-2 /空气当量比分别固定为5.25 x 10(-7)kg / s和1.0。更重要的是,最佳无因次肋位置与H-2 /空气混合物的入口速度有关,并且随H-2 /空气混合物的入口速度而增加。 (C)2016 Elsevier Ltd.保留所有权利。

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