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Heat transfer characteristic in an external heat exchanger with horizontal tube bundle

机译:水平管束外部热交换器的传热特性

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In this research article, experimental study was carried out to obtain the heat transfer characteristics between a submerged horizontal tube bundles and a fluidized bed in a large-scale circulating fluidized bed (CFB) boiler with an external heat exchanger (EHE). Authors used operating conditions of fluidized bed heat exchanger to predict the average heat transfer coefficient (HTC) making use of an existing calculation method based on the packed renewal theory. The operational parameters in the tube EHE were measured during performance tests at variable load conditions. The heat transfer characteristics are considered in terms of heat transfer mechanisms such as emulsion phase convection, gas convection and also thermal radiation. The obtained heat transfer data exhibits a maximum value with variation mean bed particle size irrespective of pressure. The results showed that the average HTC increases with a decrease of the Sauter mean particle diameter and with the increase of the fluidizing number as a result of good mixing dynamics in emulsion phase (i.e. emulsion wall contact time, bubble fraction in the bed). Based on the heat transfer data, empirical correlations are proposed for predicting a heat transfer coefficient from fluidized bed to horizontal tube bundle. The mechanistic heat transfer model predicted the average HTC in sufficient good agreement with accessible literature data. The predictions were as accurate refer to experimental data at the examined conditions.
机译:在这篇研究文章中,进行了实验研究,以获得在带有外部热交换器(EHE)的大型循环流化床(CFB)锅炉中,卧式水平管束与流化床之间的传热特性。作者利用流化床换热器的运行条件,利用基于填料更新理论的现有计算方法来预测平均传热系数(HTC)。在可变负载条件下的性能测试期间,对EHE管中的操作参数进行了测量。根据传热机理来考虑传热特性,例如乳液相对流,气体对流以及热辐射。所获得的传热数据在不考虑压力的情况下具有变化的平均床粒径的最大值。结果表明,由于乳液相中良好的混合动力学(即乳液壁接触时间,床中气泡分数),平均HTC随Sauter平均粒径的减小和流化数的增加而增加。基于传热数据,提出经验相关性以预测从流化床到水平管束的传热系数。机械传热模型预测平均HTC与可获取的文献数据充分吻合。该预测与所检查条件下的实验数据一样准确。

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