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Investigation of the effects of several porosity variation profiles on performance and pollutants emission of the porous media burners

机译:研究几种孔隙率变化曲线对多孔介质燃烧器性能和污染物排放的影响

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This paper presents results of numerical investigation on the effect of using variable porosity porous media burner on its performance and pollutant emission. A two-dimensional axisymmetric model for premixed methane/air combustion in porous media has been developed. This code solves the continuity, Navier Stokes, solid and gas energies, and chemical species transport equations using the finite volume method. The pressure and velocity have been coupled with the SIMPLE algorithm. In this paper, the results of applying two different profiles of porosity instead of constant porosity for two zones of burner have been presented. The results showed that by applying porosity variation along the burner, the peak temperature can be decreased about 4.5%, and subsequently, the amount of exhaust pollutants such as NOx can also be decreased while increase in pressure losses along the burner is negligible. In addition, the effects of excess air ratio, volumetric heat transfer coefficient, inlet velocity, chemical kinetics, conductivity coefficient, and wall temperature on the porous media burners with variation of porosity are investigated. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:本文提供了数值研究结果,研究了使用可变孔隙度多孔介质燃烧器对其性能和污染物排放的影响。建立了多孔介质中甲烷/空气预混合燃烧的二维轴对称模型。该代码使用有限体积法求解了连续性,Navier Stokes,固体和气体能量以及化学物质传输方程。压力和速度已与SIMPLE算法结合在一起。在本文中,提出了对燃烧器的两个区域应用两种不同的孔隙率分布而不是恒定孔隙率的结果。结果表明,通过沿燃烧器施加孔隙率变化,峰值温度可以降低约4.5%,随后,废气污染物(如NOx)的数量也可以减少,而沿燃烧器的压力损失的增加可以忽略不计。此外,研究了孔隙率变化时,过量空气比,体积传热系数,入口速度,化学动力学,电导率系数和壁温对多孔介质燃烧器的影响。版权所有(c)2014 John Wiley&Sons,Ltd.

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