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Assessing the Role of Particles in Radiative Heat Transfer during Oxy-Combustion of Coal and Biomass Blends

机译:评估颗粒在煤和生物质混合物氧燃烧过程中辐射传热中的作用

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摘要

This study assesses the required fidelities in modeling particle radiative properties and particle size distributions (PSDs) of combusting particles in Computational Fluid Dynamics (CFD) investigations of radiative heat transfer during oxy-combustion of coal and biomass blends. Simulations of air and oxy-combustion of coal/biomass blends in a 0.5 MW combustion test facility were carried out and compared against recent measurements of incident radiative fluxes. The prediction variations to the combusting particle radiative properties, particle swelling during devolatilization, scattering phase function, biomass devolatilization models, and the resolution (diameter intervals) employed in the fuel PSD were assessed. While the wall incident radiative flux predictions compared reasonably well with the experimental measurements, accounting for the variations in the fuel, char and ash radiative properties were deemed to be important as they strongly influenced the incident radiative fluxes and the temperature predictions in these strongly radiating flames. In addition, particle swelling and the diameter intervals also influenced the incident radiative fluxes primarily by impacting the particle extinction coefficients. This study highlights the necessity for careful selection of particle radiative property, and diameter interval parameters and the need for fuel fragmentation models to adequately predict the fly ash PSD in CFD simulations of coal/biomass combustion.
机译:本研究评估在建模粒子辐射特性和粒径分布在计算流体动力学(CFD)煤和生物质的混合物的氧 - 燃烧过程中的辐射热传递的调查燃烧颗粒(PSD的)所需的保真度。空气和煤的氧燃烧的模拟/于0.5 MW燃烧试验装置的生物质的共混物进行了和针对最近入射辐射通量的测量值进行比较。预测变化到燃烧粒子辐射特性,颗粒脱挥发分过程中的膨胀,散射相函数,生物质脱挥发份的模型,并且在燃料PSD所采用的分辨率(直径间隔)进行了评估。而壁入射辐射通量的预测与实验测量值相比相当好,占燃料,炭和灰辐射特性的变化被认为是重要的,因为它们强烈地影响在这些强烈辐射的火焰入射辐射通量和温度预测。此外,颗粒肿胀和直径间隔也主要通过影响所述颗粒的消光系数的影响入射辐射通量。这项研究强调的必要性,粒子辐射性能的精心选择,和直径的间隔参数和需要燃料碎片模型充分预测煤/生物质燃烧的CFD模拟飞灰PSD。

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