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BOILING IN COMPACT SHELL AND TUBE BUNDLES

机译:在紧凑的外壳和管束中沸腾

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摘要

The evaporation of fluids on the inside and outside of tube bundles has been studied extensively by the authors and others for many years. Most of this work has been on bundles with tube diameters of commercial interest in the range 12-19 mm. The recent drive towards process intensification has awakened interest in much smaller systems down to truly compact arrangements with tubes of less than 3 mm diameter. In this work the advantages and disadvantages of shell side versus tube side evaporation are examined in the context of reducing tube diameter. Other things being equal, tube side evaporation is best for heat transfer, but pressure drop is greatest in this configuration and fouling may be a factor to be considered. Design relationships for exchangers with small tubes based on current research by the authors and others on boiling both inside and outside the tubes are explored. The work should be of direct interest to designers considering the use of compact shell and tube exchangers for evaporation duty.
机译:作者和其他人已经对管束内部和外部的流体蒸发进行了广泛的研究多年。大部分工作是在具有商业意义的管直径在12-19 mm范围内的管束上进行的。近来对过程强化的驱动已经引起人们对更小系统的关注,直到直径小于3毫米的管的真正紧凑的布置。在这项工作中,在减小管径的背景下检查了壳侧蒸发相对于管侧蒸发的优缺点。在其他条件相同的情况下,管侧蒸发最适合传热,但在这种配置下压降最大,可能会考虑结垢。基于作者和其他人对管子内外沸腾的最新研究,探索了带有小管子的换热器的设计关系。考虑使用紧凑型管壳式换热器进行蒸发工作的设计人员应该直接关注这项工作。

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