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Heat Transfer and Energy Utilization of Waste Heat Recovery Device with Different Internal Component

机译:内部组件不同的废热回收装置的传热与能源利用

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摘要

Steel industry is high energy-consuming industry, and its waste?heat recovery is critically?important for energy utilization. In this study, pipeline bundle is used to enhance heat transfer in?waste?heat recovery device,?and?associated gas-solid heat transfer and energy utilization performance with different pipeline arrangement, pipe diameter and shape of internal component are further analyzed. The temperatures of gas and particle in device with pipeline bundle periodically fluctuate in horizontal direction, and those in staggered system distribute more uniformly than those in paralleled system. Compared with paralleled device, exergy and waste heat utilization efficiency of staggered device have been improved, and they are both higher than?those without pipeline. As pipe diameter increases, exergy and waste heat utilization efficiency first increases and then decreases, and they reach the maxima with optimal pipe diameter.?As the width of internal component keeps constant, influence of its shape on heat transfer is very little.
机译:钢铁行业是耗材高的能耗行业,其浪费?热量恢复至关重要?对于能源利用而言很重要。在本研究中,管道束用于增强垃圾?热回收装置的传热,α和α相关的气体固体传热和能量利用性能,进一步分析了不同管道布置,管道直径和内部部件的形状。管道束的装置中的气体和颗粒的温度周期性地在水平方向上波动,并且交错系统中的那些比并联系统中的交错系统的分布得更均匀。与平行的装置相比,交错装置的漏斗和废热利用效率得到了改善,它们既高于?没有管道的那些。随着管道直径的增加,漏斗和废热利用率效率首先增加,然后减少,它们具有最佳管道直径的最大值。内部部件的宽度保持恒定,其形状对热传递的影响很少。

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