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The Condensation of Ammonia-Water Mixtures in a Horizontal Shell and Tube Condenser

机译:卧式壳管式冷凝器中氨水混合物的冷凝

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The heat transfer rates that develop when ammonia water mixtures condense within a small, un-vented, horizontal, shell and tube condenser are examined. The vapor flow within the condenser was constrained by baffles and the condensate created formed a pool that flowed along the base of the condenser. During the test program the inlet ammonia vapor concentration to the condenser varied from 0 to 10 wt% and the maximum local vapor concentration measured was 26 wt %. The experimental results demonstrate that the condensation heat transfer rates generally decrease with increasing ammonia concentration, however at low ammonia concentrations (<2 wt %) the local and overall heat transfer rates for the condenser were enhanced. When the ammonia concentration was 0.9 wt %, the vapor heat transfer rate was 34 percent greater than that predicted by the Nusselt analysis for steam at the same conditions. This enhancement is attributed to the disturbed morphology of the condensate film, created by Marangoni instabilities.
机译:检查了氨水混合物在小型,无通风,卧式,管壳式冷凝器中冷凝时产生的传热速率。折流板限制了冷凝器内的蒸汽流动,产生的冷凝物形成了一个沿冷凝器底部流动的水池。在测试程序期间,进入冷凝器的氨气浓度为0至10 wt%,测得的最大局部蒸气浓度为26 wt%。实验结果表明,冷凝传热速率通常随着氨浓度的增加而降低,但是在低氨浓度(<2 wt%)时,冷凝器的局部传热速率和总传热速率都会提高。当氨浓度为0.9 wt%时,在相同条件下,蒸汽的传热速率比Nusselt分析预测的蒸汽高34%。这种增强归因于由Marangoni不稳定性产生的凝结膜的不规则形貌。

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