首页> 外文会议>ASME international heat transfer conference;IHTC14 >AN EXPERIMENTAL STUDY OF CONDENSATE RETENTION ON THE AIR SIDE OF FLAT-TUBE HEAT EXCHANGERS
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AN EXPERIMENTAL STUDY OF CONDENSATE RETENTION ON THE AIR SIDE OF FLAT-TUBE HEAT EXCHANGERS

机译:平板式换热器空气侧冷凝水保留的实验研究

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Condensate on the air-side surface of flat-tube air-cooling heat exchangers can result in several adverse effects on the overall thermal hydraulic performance. In order to enhance the performance of compact heat exchangers under wet-surface conditions, promoting the drainage of condensed water is critical. Drainage channels on tube walls might provide a robust solution to promote condensate drainage from compact heat exchangers. A quantitative and qualitative evaluation of the effectiveness of drainage channels on the condensate retention characteristics of compact flat-tube louver-fin heat exchangers is presented. Various geometries of drainage channels are engraved on the surrogate tubes in contact with fin stock. Two fin designs are tested using dynamic dip testing method and a small wind tunnel. The data from the quantitative results and the visualization tests clearly show that the drainage channels reduce the condensate retention for one of the fin designs. The results also provide a comparison between drainage channels based on their geometry and dimensions.
机译:扁平管式空气冷却热交换器的空气侧表面上的冷凝水会对整体热力水力性能产生若干不利影响。为了提高紧凑型热交换器在潮湿表面条件下的性能,促进冷凝水的排放至关重要。管壁上的排水通道可能会提供可靠的解决方案,以促进紧凑型热交换器中的冷凝水排出。提出了定量和定性评估排水通道对紧凑型扁平管百叶窗翅片式换热器冷凝水保留特性的有效性的评估。与翅片料接触的替代管上刻有各种几何形状的排水通道。使用动态倾角测试方法和小型风洞测试了两个散热片设计。定量结果和可视化测试中的数据清楚地表明,对于一种散热片设计,排水通道减少了冷凝水的滞留。结果还提供了根据排水通道的几何形状和尺寸进行比较的结果。

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