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管壳式冷凝器内低螺纹管的凝结传热模型
引用本文:谷波,郑钢,裴勇华,魏跃文.管壳式冷凝器内低螺纹管的凝结传热模型[J].上海交通大学学报,2002,36(2):198-201.
作者姓名:谷波  郑钢  裴勇华  魏跃文
作者单位:上海交通大学,动力与能源工程学院,上海,200030
基金项目:国家重点基础研究发展规划项目 ( G2 0 0 0 0 2 6 30 9),上海交通大学“985”建设项目
摘    要:以蒸气在垂直壁面和水平圆管上的凝结传热特性为基础,建立了蒸汽在基管,翅片及翅顶上的凝结传热模型,对影响低螺纹管传热的结构参数翅片间距,翅片夹角以及当量翅高进行了计算分析,进而建立了低螺纹管管簇的凝结传热模型,得出了低螺纹管管簇的平均冷凝传热系数与管排数和管列数之间的关系式。

关 键 词:管壳式冷凝器  低螺纹管  凝结传热模型
文章编号:1006-2467(2002)02-0198-04
修稿时间:2001年2月26日

Heat Transfer Model for Thread Tube in Shell and Tube Condenser
GU Bo,ZHENG Gang,PEI Yong hua,WEI Yue wen.Heat Transfer Model for Thread Tube in Shell and Tube Condenser[J].Journal of Shanghai Jiaotong University,2002,36(2):198-201.
Authors:GU Bo  ZHENG Gang  PEI Yong hua  WEI Yue wen
Abstract:The heat transfer model was built that the steam condensates on the base tube, the fins and the tops of the fin, which is based on that the steam condensates on the upright surface and the horizontal tube. Then the geometrical parameters, such as the space between the fins, the angle and the relative height of the fin, which can affect the heat transfer coefficient between the steam and the thread tube, were studied. Finally, the model of a group of tubes was built based on the model of the single tube. The result between the heat transfer coefficient and the column number of the fins can be concluded.
Keywords:shell and tube condenser  thread tube  heat transfer
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