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Experimental investigation of volumetric exergy transfer coefficient in vertical moving bed for sinter waste heat recovery

机译:烧结废热回收立式移动床的体积火用传递系数实验研究

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The volumetric exergy transfer coefficient of sinter bed layers in vertical tank for sinter waste heat recovery has been presented. Correlations involving relevant variables to predict the local and mean volumetric exergy transfer coefficient, Nusselt number and the non-dimensional exergy flux have been deduced by using the second law of thermodynamics and non-equilibrium thermodynamics theory. The relationships of the local and mean volumetric exergy Nusselt number with the local and mean volumetric heat transfer Nusselt number and Reynolds number are analyzed. The experimental results of exergy transfer characteristics in sinter moving bed with different cooling air flow rate and different sinter mass flow rate are obtained from a homemade moving bed set up, and the influences of the height of gas-solid heat exchange section, Reynolds number and gas-solid water equivalent ratio on exergy transfer characteristics are graphically and analyzed. The research results indicates that air-sinter exergy transfer process is mainly determined by the exergy transfer caused by temperature difference, and the impact of exergy transfer due to internal pressure loss is relatively small for given vertical tank and sinter particles. There is an ideal range of gas-solid water equivalent ratio, which makes exergy transfer more efficient. (C) 2018 Published by Elsevier Ltd.
机译:提出了立式储罐中用于烧结余热回收的烧结床层的体积火用传递系数。利用热力学第二定律和非平衡热力学理论,推导了相关变量的相关性,以预测局部和平均体积火用传递系数,努塞尔数和无量纲火用通量。分析了局部和平均体积火用努塞尔数与局部和平均体积传热努塞尔数和雷诺数的关系。通过自制的移动床得到了不同冷却空气流量和不同烧结质量流量的烧结矿移动床的火用传递特性的实验结果,以及气固换热段的高度,雷诺数和以图形方式分析了气固当量比对火用传递特性的影响。研究结果表明,空气-烧结矿的火力传递过程主要是由温差引起的火力传递决定的,对于给定的立式储罐和烧结矿颗粒,由于内部压力损失而产生的火力传递的影响相对较小。气固水当量比有一个理想的范围,这使火用转移效率更高。 (C)2018由Elsevier Ltd.发布

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