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带有中间分液结构的管壳式冷凝器实验研究

李连涛 诸凯 刘圣春 王华峰

化工进展2016,Vol.35Issue(5):1332-1337,6.
化工进展2016,Vol.35Issue(5):1332-1337,6.DOI:10.16085/j.issn.1000-6613.2016.05.011

带有中间分液结构的管壳式冷凝器实验研究

Experimental study of shell and tube condenser with middle liquid separation structure

李连涛 1诸凯 1刘圣春 1王华峰1

作者信息

  • 1. 天津商业大学,天津市制冷技术重点实验室,天津 300134
  • 折叠

摘要

Abstract

As to condensation in tube,the technology initiatives of the “short-tube effect” theory to maintain a relatively higher heat transfer coefficient are making intermediate separation of the liquid, and changing the flow regimes of gas-liquid flow,in order to keep the steam in the heat exchange tube at the inlet section at a high-efficient heat transfer state. Combined with the structure of traditional condenser,a horizontal-water cooling shell and tube condenser with liquid separation structure was designed for experimental study in this paper. Heat transfer effect was observed by different diameters and numbers of liquid separation pipes arranged at pass partition plate of condenser. The results were compared to the traditional condenser with respect to the overall heat transfer coefficient,outlet condensate temperature and pressure loss. It was shown that the condensers with different diameters and numbers of liquid separation pipes have similar thermal performance. The overall heat transfer coefficient of condensers with different diameters and numbers of liquid separation pipes is higher than that of the traditional condenser. The outlet condensate temperature is lower than that of the traditional condenser and has lower pressure loss. The condenser with liquid separation pipes with the diameter of 0.5mm and 1mm at right side and the pipes with the diameter of 1mm,0.5mm at left side has a better comprehensive heat transfer performance under the test conditions.

关键词

短管效应/气液两相流/分离/分液管/管壳式冷凝器/传热

Key words

short-tube effect/gas-liquid flow/separation/liquid separation pipes/shell and tube condenser/heat transfer

分类

能源科技

引用本文复制引用

李连涛,诸凯,刘圣春,王华峰..带有中间分液结构的管壳式冷凝器实验研究[J].化工进展,2016,35(5):1332-1337,6.

基金项目

国家863科技支撑计划项目(2012AA053001)。 ()

化工进展

OA北大核心CSCDCSTPCD

1000-6613

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