首页> 外文期刊>International Journal of Heat and Mass Transfer >THE INFLUENCE OF SOOT LOADING ON WEIGHTED SUM OF GREY GASES SOLUTIONS TO THE RADIATIVE TRANSFER EQUATION ACROSS MIXTURES OF GASES AND SOOT
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THE INFLUENCE OF SOOT LOADING ON WEIGHTED SUM OF GREY GASES SOLUTIONS TO THE RADIATIVE TRANSFER EQUATION ACROSS MIXTURES OF GASES AND SOOT

机译:烟尘负荷对灰色气体解决方案加权总和的影响跨气体和烟尘混合的辐射转移方程

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摘要

Different approaches to employing weighted sum of grey gases data in line of sight solution to the radiative transfer equation (RTE) are compared for mixtures of combustion gases and soot. Responses to variations in soot loading are analysed across configurations comprising uniform and non-uniform properties and compositions. Relative to a differential banded transmissivity solution, a weighted sum of grey gases (WSGG) solution, which solves the RTE for each grey gas component, yields greater accuracy than a total property (TP) solution. The latter evaluates radiative properties on a cell-by-cell basis for application in a single equation. However, accuracy of the TP solution is shown to improve with increasing soot loading.
机译:针对燃烧气体和烟尘的混合物,比较了在视线解的辐射传输方程(RTE)中采用灰色气体数据的加权总和的不同方法。在包括均一和不均一的特性和组成的结构中分析了烟灰负荷变化的响应。相对于差分带状透射率解决方案,解决每种灰气体成分的RTE的灰气体加权总和(WSGG)解决方案比总特性(TP)解决方案具有更高的准确性。后者在逐个单元的基础上评估辐射特性,以应用于单个方程式中。但是,显示出TP解决方案的精度会随着烟灰负荷的增加而提高。

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