...
首页> 外文期刊>International Journal of Refrigeration >Heat transfer, pressure drop, and flow pattern recognition during condensation inside smooth, helical micro-fin, and herringbone tubes
【24h】

Heat transfer, pressure drop, and flow pattern recognition during condensation inside smooth, helical micro-fin, and herringbone tubes

机译:在光滑的螺旋形微翅片和人字形管内冷凝期间的传热,压降和流型识别

获取原文
获取原文并翻译 | 示例

摘要

This paper presents a study of flow regimes, pressure drops, and heat transfer coefficients during refrigerant condensation inside a smooth, an 18°helical micro-fin, and a herringbone tubes. Experimental work was conducted for condensing refrigerants R-22, R-407C, and R-134a at an average saturation temperature of 40℃ with mass fluxes ranging from 400 to 800 kg m{sup}(-2) s{sup}(-1) and with vapour qualities ranging from 0.85 to 0.95 at condenser inlet and from 0.05 to 0.15 at condenser outlet. These test conditions represent annular and intermittent (slug and plug) flow conditions. Results showed that transition from annular flow to intermittent flow, on average for the three refrigerants, occurred at a vapour quality of 0.49 for the smooth tube, 0.29 for the helical micro-fin tube, and 0.26 for the herringbone tube. These transition vapour qualities were also reflected in the pressure gradients, with the herringbone tube having the highest pressure gradient. The pressure gradients encountered in the herringbone tube were about 79% higher than that of the smooth tube and about 27% higher than that of the helical micro-fin tube. A widely used pressure drop correlation for condensation in helical micro-fin tubes was modified for the case of the herringbone tube. The modified correlation predicted the data within a 1% error with an absolute deviation of 7%. Heat transfer enhancement factors for the herringbone tube against the smooth tube were on average 70% higher while against the helical micro-fin tube it was 40% higher. A correlation for predicting heat transfer coefficients inside a helical micro-fin tube was modified for the herringbone tube. On average the correlation predicted the data to within 4% with an average standard deviation of 8%.
机译:本文介绍了在光滑,18°螺旋微翅片和人字形管内的制冷剂冷凝过程中的流态,压降和传热系数的研究。进行了制冷剂R-22,R-407C和R-134a在平均饱和温度为40℃,质量通量为400至800 kg m {sup}(-2)s {sup}((- 1)的蒸汽质量在冷凝器入口处为0.85至0.95,在冷凝器出口处为0.05至0.15。这些测试条件代表环形和间歇(塞子和塞子)流动条件。结果表明,对于三种制冷剂,平均从环形流到间歇流的过渡过程是:光滑管的蒸汽质量为0.49,螺旋微翅片管的蒸汽质量为0.29,人字形管的蒸汽质量为0.26。这些过渡蒸气质量也反映在压力梯度中,其中人字管的压力梯度最高。人字形管中遇到的压力梯度比光滑管高约79%,比螺旋微翅片管高约27%。对于人字管的情况,修改了广泛使用的螺旋微翅管中冷凝的压降相关性。修改后的相关性将数据预测为误差在1%以内,绝对偏差为7%。人字形管相对于光滑管的传热增强因子平均高出70%,而螺旋形微翅片管的传热增强因子则高40%。人字管修改了用于预测螺旋形微翅片管内部传热系数的相关性。平均而言,相关性将数据预测为4%以内,平均标准偏差为8%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号