首页> 外文期刊>International Journal of Refrigeration >Reasons for drop in shell-and-tube condenser performance when replacing R22 with zeotropic mixtures. Part 2: investigation of mass transfer resistance effects
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Reasons for drop in shell-and-tube condenser performance when replacing R22 with zeotropic mixtures. Part 2: investigation of mass transfer resistance effects

机译:用共沸混合物代替R22时,管壳式冷凝器性能下降的原因。第2部分:传质阻力效应研究

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摘要

Detailed calculations of condensation outside a column of horizontal smooth tubes have been carried out in order to investigate the influence of mass transfer resistance for a zeotropic refrigerant mixture. Diffusive transport is calculated locally in both phases. Calculation results show that mass transfer resistance in the gas phase reduces heat transfer by 10-20% for a binary mixture with a glide similar to that of R407C. The decrease in heat transfer due to poor mixing in the condensate is from 15 to 65% for the conditions investigated; the lower the duty, the greater the decrease. Results show that if assuming mixing in the condensate by diffusion only, the degrees of mixing and the duty dependency are similar to results in earlier work where calculations were matched to experimental data. Diffusion is likely to be the dominant mixing mechanism in the condensate, and the mixing is poor under certain conditions, which might explain the drop in condenser performance for some heat pump applications.
机译:为了研究传质阻力对共沸制冷剂混合物的影响,已经对水平光滑管柱外的冷凝进行了详细的计算。扩散运输在两个阶段均本地计算。计算结果表明,对于气相滑移类似于R407C的二元混合物,气相中的传质阻力会使传热降低10-20%。在所研究的条件下,由于冷凝液混合不良而导致的传热降低为15%至65%。占空比越低,减少幅度越大。结果表明,如果仅假设通过扩散在冷凝液中进行混合,则混合程度和占空比相关性与早期工作中的结果相似,后者的计算与实验数据相匹配。扩散可能是冷凝液中主要的混合机制,在某些条件下混合效果不佳,这可以解释某些热泵应用中冷凝器性能的下降。

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