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Heat transfer, pressure drop and structural analysis of a finned plate ceramic heat exchanger

机译:翅片式陶瓷换热器的传热,压降及结构分析

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摘要

High temperature heat exchangers (HTHE) constructed with ceramics can achieve higher temperatures of operation. Resistance to oxidation is the great advantage of using ceramics for this application. This paper presents experimental characterization of one ceramic heat exchanger composed of finned plates operating at temperatures as high as 800 degrees C and Reynolds number between 170 and 2000. The heat exchanger operates in counter-flow with air in both sides. The plates were constructed using alumina (Al2O3) with the Gelcasting technique. Thermal performance was obtained in the form of Colburn and friction factors as a function of Reynolds number. The heat exchanger effectiveness varied between 0.620 and 0.901. Progressively higher temperature was imposed to the heat exchanger prototype to cause structural failure. In addition, the design and structural integrity assessments were carried out using refined finite element computations based on real experiments regarding fracture resistance of the employed ceramic. Thermal performance of the ceramic heat exchanger is adequate and predictable using CFD simulations, but guarantee structural integrity remains challenging. (C) 2016 Elsevier Ltd. All rights reserved.
机译:用陶瓷构造的高温热交换器(HTHE)可以达到更高的工作温度。耐氧化性是在该应用中使用陶瓷的最大优势。本文介绍了一种由翅片组成的陶瓷热交换器的实验特性,该翅片板在高达800摄氏度的温度下运行,雷诺数在170至2000之间。热交换器在两侧均与空气逆流运行。使用凝胶铸造技术使用氧化铝(Al2O3)构造板。热性能以科尔本和摩擦因数的形式获得,是雷诺数的函数。热交换器效率在0.620和0.901之间变化。逐步将较高的温度施加到热交换器原型上,导致结构故障。另外,基于关于所用陶瓷的抗断裂性的真实实验,使用改进的有限元计算来进行设计和结构完整性评估。陶瓷换热器的热性能可以通过CFD模拟得到充分的预测,但是要保证结构的完整性仍然具有挑战性。 (C)2016 Elsevier Ltd.保留所有权利。

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