首页> 外文期刊>International Journal of Heat and Mass Transfer >Bed-to-wall heat transfer modelling in the top region of a CFB riser column with abrupt riser exit geometries
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Bed-to-wall heat transfer modelling in the top region of a CFB riser column with abrupt riser exit geometries

机译:CFB立管塔顶部区域的壁到壁传热模型,具有立管出口几何形状突变

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摘要

The paper presents a mechanistic model to predict bed-to-wall heat transfer coefficient in the top region of a circulating fluidized bed (CFB) riser column by considering the riser exit geometry effects on bed hydrodynamics. With abrupt riser exit geometry, some solids will reflect back in to the riser column, thereby increasing the solids concentration in the top region of the riser column of a CFB. This in turn results in higher bed-to-wall heat transfer coefficients in the top region. At present, not much information exists in the literature to predict bed-to-wall heat transfer coefficient in the top region of a riser column with riser exit geometry effects. In the present work, a mechanistic model is proposed to estimate bed-to-wall heat transfer coefficient with riser exit geometry configurations. The length of influence of gas-solid flow structure from the riser exit due to various riser exit geometries is also presented. The solids reflux ratio is an important parameter, which influences the heat transfer rate in the top region. For the same operating conditions the bed-to-wall heat transfer coefficient increases with the abrupt riser exit geometry configuration compared to a smooth riser exit in the top region. The proposed model predictions are compared with the published experimental data for right angle exit configuration and a reasonable agreement is observed.
机译:本文提出了一种机械模型,通过考虑立管出口几何形状对床流体动力学的影响,来预测循环流化床(CFB)立管塔顶部区域的床对壁传热系数。在立管出口几何形状突然变化的情况下,一些固体将反射回到立管塔中,从而增加了CFB立管塔顶部区域中的固体浓度。这进而导致在顶部区域中较高的床对墙传热系数。目前,在文献中没有太多的信息来预测具有立管出口几何效应的立管塔顶部区域的床对壁传热系数。在目前的工作中,提出了一种机械模型来估计具有立管出口几何构型的床对墙传热系数。还给出了由于各种立管出口几何形状而引起的来自立管出口的气固流动结构影响的长度。固体回流比是重要的参数,它影响顶部区域的传热速率。对于相同的工作条件,与顶部区域中的平滑立管出口相比,床与壁的传热系数随立管出口几何形状的突然增加而增加。将拟议的模型预测与已发布的直角出口构型的实验数据进行比较,并观察到合理的一致性。

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