首页> 外文会议>ASME turbo expo >NUMERICAL STUDY OF INTERNALLY FINNED BAYONET TUBES IN A HIGH TEMPERATURE BAYONET TUBE HEAT EXCHANGER WITH INNER AND OUTER FINS
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NUMERICAL STUDY OF INTERNALLY FINNED BAYONET TUBES IN A HIGH TEMPERATURE BAYONET TUBE HEAT EXCHANGER WITH INNER AND OUTER FINS

机译:内外翅式高温BAYONET管换热器内部鳍状管的数值研究

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摘要

A bayonet tube heat exchanger with fins being employed outside and inside outer tubes of bayonet-elements is recommended to be used in the ultra high temperature environment by our previous research, such as Externally Fired Combined Cycle and syngas production processes. The present study is concerned with the heat transfer and pressure drop characteristics in internally finned bayonet tubes. Two kinds of thermal boundary conditions applied to the model, i.e., constant wall temperature boundary and convective heat transfer boundary, are calculated and compared. Effects of different fluid flow patterns, inlet Reynolds number and tube length on the heat transfer and pressure drop characteristics are performed. Thermal stress is produced due to the large temperature difference between the inner and outer tube under ultra high temperature environment. Considering the safety of the heat exchanger, the alternative designs are suggested that there should be a small spacing between the inner fin and inner tube surface. The effects of various spacing on the heat transfer and pressure drop characteristics are discussed as well. Based on the results, the suitable spacing is proposed. [Keywords: bayonet tube heat exchanger; internally finned bayonet tube; heat transfer; high temperature.
机译:我们以前的研究,例如外部燃烧联合循环和合成气生产工艺,建议在超高温环境中使用在卡口元件的外管和内外管中使用带翅片的卡口管式换热器。本研究涉及内部带翅片的刺刀管中的传热和压降特性。计算并比较了应用于模型的两种热边界条件,即恒定壁温边界和对流传热边界。进行了不同流体流动方式,入口雷诺数和管长对传热和压降特性的影响。在超高温环境下,由于内,外管之间的温差较大,会产生热应力。考虑到热交换器的安全性,建议采用替代设计,在内散热片和内管表面之间应留出较小的间距。还讨论了各种间距对传热和压降特性的影响。根据结果​​,提出了合适的间距。 [关键词:卡口管式换热器;内部带翅片的刺刀管;传播热量;高温。

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