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Heat transfer of gas-solid two-phase mixtures flowing through a packed bed under constant wall heat flux conditions

机译:在恒定壁热通量条件下流过填充床的气固两相混合物的传热

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An experimental study has been carried out on both the transient and steady state heat transfer of a gas-solid two-phase mixture flowing through a cylindrical packed bed reactor under the constant wall heat flux conditions.A logarithmic mean temperature difference (LMTD) method is used to process the steady state data to obtain the overall heat transfer coefficient.The effects of solids loading,particle size and flow Reynolds number are investigated.The results show that the introduction of suspended particles greatly enhances the heat transfer and the enhancement increases approximately linearly with solids loading and the effect of particle size is relatively weak under the conditions of this work.A correlation is proposed based on the experimental data,which relates well the Nusselt number to the Reynolds number,the Archimedes number and the suspended solids loading.Given other conditions,the Nusselt number at the constant wall heat flux conditions is much higher than that under the constant wall temperature conditions.It is shown that the Reynolds number and particle loading have a greater influence on the Nusselt number under the constant heat flux conditions than that under the constant wall temperature conditions investigated by the authors in a previous study.
机译:对在恒定壁热通量条件下流经圆柱形填充床反应器的气固两相混合物的瞬态和稳态传热进行了实验研究。对数平均温差(LMTD)方法为研究了固体载量,颗粒大小和流动雷诺数的影响。结果表明,悬浮颗粒的引入极大地增强了热传递,并且增强近似线性增加在这项工作的条件下,固体颗粒的含量相对较小。在实验数据的基础上,提出了一种相关性,该相关性很好地将Nusselt数与雷诺数,阿基米德数和悬浮固体的含量相关联。在其他条件下,恒定壁热通量条件下的努塞尔数远高于研究表明,在恒定热通量条件下,雷诺数和颗粒载荷对Nusselt数的影响比在先前研究中在恒定壁温条件下的影响更大。

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