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Numerical study on transient heat transfer in a regenerative oxidation bed during the preheating process

机译:预热过程中再生氧化床瞬态传热的数值研究

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The transient heat transfer characteristics of a regenerative oxidation bed placed in a coal mine methane thermal reverse-flow reactor during preheating process are numerically investigated in this paper. The regenerative oxidation bed is modeled in a three-dimensional, unsteady state and laminar flow system, and is assumed as a semitransparent porous media. The calculating results indicate that increasing the inlet mass flow could shorten the time of preheating, specific heat and porosity have a great influence on the heat storage capacity of the regenerative oxidation bed, and the contribution of the solid phase radiation to heat transfer can not be ignored. All these work can help to understand the heat transfer phenomena and mechanism in a regenerative oxidation bed during the preheating process.
机译:在本文中,在预热过程中放置​​在煤矿甲烷热反应器中的再生氧化床的瞬态传热特性。再生氧化床以三维,不稳定的状态和层流系统建模,并且被假定为半透明多孔介质。计算结果表明,增加入口质量流量可以缩短预热,比热和孔隙率对再生氧化床的储热容量产生很大影响,以及固相辐射与传热的贡献不能忽略了。所有这些工作都可以帮助在预热过程中了解再生氧化床中的传热现象和机制。

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