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Development of Exchangeable Fins for Heat Transfer Enhancement in Existing Shell and Tube Heat Exchangers

机译:在现有的壳管式换热器中开发用于增强传热的可交换散热片

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To conventionally extend heat transfer area in shell-and-tube heat exchangers, a method is proposed where sheet materials with high thermal conductivities are stretched among tubes. The numerical simulations are carried out to predict the performance of heat exchanger with or without the sheets. As a result, it is found that thermal contact resistances between the sheet and tubes rather than thickness and thermal conductivity of the sheet influence overall heat transfer coefficient. In the experiments, the carbon fibers clothes (27 W m~(-1) K~(-1)) are pass zigzag though the tubes whose pitch is 20 mm. The heat transfer rate between hot water flowing in the tube side and air in the shell side are measured. No substantial improvement of heat transfer is unfortunately observed experimentally due to contact thermal resistance. The method proposed in this study conclusively has a potential that the heat transfer rate improves no less than a few ten percents.
机译:为了常规地扩大管壳式热交换器中的传热面积,提出了一种在管之间拉伸具有高导热率的片材的方法。进行数值模拟以预测带有或不带有薄板的热交换器的性能。结果,发现片材和管之间的热接触电阻而不是片材的厚度和导热率影响总的传热系数。在实验中,碳纤维衣服(27 W m〜(-1)K〜(-1))通过锯齿形通过管距为20 mm的管。测量在管侧流动的热水与在壳侧的空气之间的热传递率。不幸的是,由于接触热阻,实验上没有观察到传热的实质改善。本研究中提出的方法最终具有使传热率提高不少于百分之十的潜力。

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