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首页> 外文期刊>International Journal of Thermal Sciences >Three dimensional numerical simulation of combustion and heat transfer in porous radiant burners
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Three dimensional numerical simulation of combustion and heat transfer in porous radiant burners

机译:多孔辐射燃烧器中燃烧和传热的三维数值模拟

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In the present study, combustion phenomenon and heat transfer in a three-dimensional rectangular porous radiant burner are numerically studied. Methane-air mixture with five-step reaction mechanism is used to model the combustion process inside the porous matrix. Because of the non-local thermal equilibrium between solid and gas phases, separate energy equations for each of them are numerically solved. Besides, the discrete ordinates method is used to solve the radiative transfer equation for solid phase, where the gas phase is considered to be transparent. The set of governing equations including, gas and porous energy equations, the chemical species transport equations and the radiative transfer equation are simultaneously solved to calculate temperature profiles, radiative heat fluxes and species concentrations inside the porous medium. By this technique, thermal characteristics of porous radiant burners operating under different steady conditions are carried out. Results show that by increasing the excess air ratio, porous burner operates under low maximum temperature and consequently less emission of pollutants in the combustion product. Also, numerical results reveal that thermal behavior of porous burner is much affected by the optical thickness of radiating medium. Good agreement is found between numerical results and theoretical data obtained by other investigators.
机译:在本研究中,在数值上研究了三维矩形多孔辐射燃烧器中的燃烧现象和传热。具有五步反应机理的甲烷 - 空气混合物用于将燃烧过程模拟多孔基质内。由于固体和气相之间的非局部热平衡,因此它们中的每一个的单独的能量方程是数值求解的。此外,离散坐标方法用于解决固相的辐射传递方程,其中气相被认为是透明的。同时解决了包括气体和多孔能量方程,包括气体和多孔能量方程,化学物质传输方程和辐射转移方程的集合等式,以计算多孔介质内部的温度曲线,辐射热通量和物种浓度。通过这种技术,进行了在不同稳定条件下操作的多孔辐射燃烧器的热特性。结果表明,通过提高过量的空气比,多孔燃烧器在最高最高温度下运行,因此燃烧产物中的污染物排放较小。此外,数值结果表明,多孔燃烧器的热行为受到辐射介质的光学厚度的影响很大。在其他调查人员获得的数值结果和理论数据之间存在良好的一致性。

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