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Modeling and measurement of frost characteristics on heat exchanger surfaces.

机译:换热器表面的霜冻特性建模和测量。

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摘要

Frost growing on heat exchanger fins is a common problem for refrigeration and air-conditioning cooling equipment. Frost growth on heat exchanger fins causes the performance of heat exchangers to decline because frost accumulation blocks air flow path and causes an increase of the air flow pressure drop and decrease of air flow rate across heat exchangers.; A test facility was developed to characterize frost growing on heat exchanger flat plates and finned surfaces where the cold surface and the air supply conditions were similar to those experienced in freezers. Several new measurement techniques were used to measure frost height and mass accumulation and heat flux.; A numerical model for predicting frost growth on flat plates and plate-fin exchangers was developed. The model treats the frost as a transient, one-dimensional porous media and includes transients two-dimensional heat conduction in the fins.; The numerical model was validated using experimental data for frost height, frost density, air pressure drop across the fins and heat rate through the cold base. The agreement between the experimental data and simulation results were within the uncertainty bounds for most of the data.; It is found that for a constant air-flow rate through the heat exchanger over a four hour period, the blockage of air-flow resulting from the frost growth increases the pressure drop across the heat exchanger by up to a factor of 10, while heat transfer rate decreases by only 21%.
机译:对于制冷和空调冷却设备而言,在热交换器翅片上结霜是一个普遍的问题。热交换器翅片上的霜增长导致热交换器的性能下降,这是因为霜的积聚阻塞了空气流动路径,并导致了空气压力下降的增加和热交换器之间空气流速的降低。开发了一个测试设备,以表征在热交换器平板和翅片表面上霜的生长情况,这些表面的冷表面和空气供应条件类似于冷冻机中所经历的条件。几种新的测量技术被用来测量霜冻高度,质量积累和热通量。建立了预测平板和板翅式换热器上霜冻增长的数值模型。该模型将霜视为瞬态的一维多孔介质,并在翅片中包含瞬态的二维热传导。使用霜冻高度,霜冻密度,翼片上的气压下降以及通过冷基的热率的实验数据验证了该数值模型。实验数据与模拟结果之间的一致性在大多数数据的不确定性范围内。结果发现,对于在四个小时内通过热交换器的恒定空气流量,由于霜的生长而导致的气流阻塞将使热交换器上的压降增加多达系数是10,而传热率仅降低21%。

著录项

  • 作者

    Chen, Hong.;

  • 作者单位

    The University of Saskatchewan (Canada).;

  • 授予单位 The University of Saskatchewan (Canada).;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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