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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Ceramic high temperature plate fin heat exchanger: Experimental investigation under high temperatures and pressures
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Ceramic high temperature plate fin heat exchanger: Experimental investigation under high temperatures and pressures

机译:陶瓷高温板翅式换热器:高温和压力下的实验研究

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摘要

Ceramic materials enable operation in high temperature and harsh environments and can so exceed the capabilities of comparable metal heat exchangers. For the use in power plant applications and high temperature processes a heat exchanger has to operate under both high temperature and high pressure levels. So far, the operation of a ceramic heat exchanger under such conditions has not been investigated. This work presents a ceramic heat exchanger prototype with modified offset-strip-fin design, which was experimentally investigated in a specifically designed test environment. Experimental tests were conducted with air as a heat transfer fluid at temperatures up to 800 degrees C, absolute pressures up to 5 bar and norm volume flows up to 160 N m(3) h(-1). The functionality under high temperatures and absolute pressures could be proven. The paper reports measured performances of the heat exchanger prototype, for which heat transferred up to six kilowatt and effectiveness up to 97% has been achieved. A comparison of Colburn and friction factors with correlations from literature was conducted, too. Good agreement for Colburn prediction of the flue gas channels could be shown, but the investigation also reveals a limited applicability for the friction factor and the Colburn factor of the process gas channel.
机译:陶瓷材料在高温和恶劣环境中使操作能够超出可比金属换热器的能力。对于在发电厂应用和高温工艺中,热交换器必须在高温和高压水平下运行。到目前为止,陶瓷热交换器在这种条件下的操作尚未研究。这项工作介绍了具有改进的偏移条 - 鳍片设计的陶瓷热交换器原型,在专门设计的测试环境中实验研究。在高达800℃的温度下,用空气进行试验试验,其温度高达800℃,绝对压力高达5巴,标量高达160nm(3)小时(-1)。可以证明在高温和绝对压力下的功能。本文报告了测量的热交换器原型的性能,其中热量转移到六千瓦,效果高达97%。对来自文献相关的Colburn和摩擦因子的比较。可以示出烟气通道的COLBurn预测的良好协议,但调查还揭示了对工艺气体通道的摩擦因子和COLBURN因子的有限适用性。

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