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Experimental study of thermal effectiveness in pneumatic conveying heat exchanger

机译:气力输送换热器热效率的实验研究

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摘要

Gas-solid interactions in pneumatic conveying are utilized to transfer heat between gas and solid phases. Experiments on air-solid heat transfer were carried out in a specially designed vertical pneumatic conveying test rig consisting of Galvanized Iron duct of 54 mm inner diameter and 2.2 m height, using gypsum as the solid medium and hot air as gas medium. Thermal effectiveness of air was found to increase with solids feed rate and decrease with air velocity. Thermal effectiveness of solids was found to decrease with solids feed rate. An optimum air velocity has found to exist at which the thermal effectiveness of solids is maximum. The effect of particle size on thermal effectiveness of air and solid is found to be predominant at higher solids feed rates. A dimensionless correlation has been developed for thermal effectiveness of solid which predicts the present experimental data within an error of ±12%.
机译:气动输送中的气固相互作用被用来在气相和固相之间传递热量。在特别设计的垂直气动输送试验台上进行了气固传热实验,该试验台由内径为54 mm,高度为2.2 m的镀锌铁管组成,使用石膏作为固体介质,而热空气作为气体介质。发现空气的热效率随固体进料速率的增加而增加,随空气速度的降低而降低。发现固体的热效率随固体进料速率降低。发现存在最佳的空气速度,在该速度下,固体的热效率最大。发现在较高的固体进料速率下,粒度对空气和固体的热效率的影响是主要的。已经开发了用于固体热效率的无量纲相关性,该相关性可预测当前的实验数据,误差在±12%以内。

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