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溴化锂制冷蒸发器中钛椭圆管外降膜流动及传热特性
引用本文:彭德其,蒲幸禹,俞天兰,李广,吴淑英.溴化锂制冷蒸发器中钛椭圆管外降膜流动及传热特性[J].化学工业与工程,2022,39(1):97-105.
作者姓名:彭德其  蒲幸禹  俞天兰  李广  吴淑英
作者单位:1. 湘潭大学机械工程学院,湖南 湘潭 411105; 2. 湖南工业大学机械工程学院,湖南 株洲 412007; 3. 中车株洲电机有限公司,湖南 株洲 412007
基金项目:湖南省战略性新兴产业项目(2019GK4021);湘潭市科技计划项目(GX-YB20201011)
摘    要:为了提高溴化锂中央空调系统中制冷蒸发器的耐腐蚀性,采用钛管代替铜管,并提出椭圆管代替圆管方式提高钛管外制冷剂蒸发效率,数值模拟研究椭圆系数E对椭圆钛管外制冷剂流动过程、液膜厚度分布及传热系数影响规律.结果 表明:在椭圆系数E=l.0~1.7范围内,随着E增大,管外液膜平均厚度减薄、液膜速度增大、干壁面积减少、传热边界层...

关 键 词:溴化锂制冷  降膜蒸发  汽液两相流  数值模拟  椭圆管

Flow and heat transfer characteristics of falling film outside titanium elliptical tube in LiBr refrigeration evaporator
PENG Deqi,PU Xingyu,YU Tianlan,LI Guang,WU Shuying.Flow and heat transfer characteristics of falling film outside titanium elliptical tube in LiBr refrigeration evaporator[J].Chemical Industry and Engineering,2022,39(1):97-105.
Authors:PENG Deqi  PU Xingyu  YU Tianlan  LI Guang  WU Shuying
Affiliation:1. School of Mechanical Engineering, Xiangtan University, Hunan Xiangtan 411105, China; 2. School of Mechanical Engineering, Hunan University of Technology, Hunan Zhuzhou 412007, China; 3. CRRC Zhuzhou Motor Co., Ltd, Hunan Zhuzhou 412000, China
Abstract:In order to improve the corrosion resistance of refrigeration evaporator in LiBr (lithium bromide) central air conditioning system, titanium tube is used instead of copper tube. In addition, an elliptical tube instead of a circular tube is proposed to improve the evaporation efficiency of refrigerant outside the titanium tube. Effect of elliptic coefficient E on flow process, film thickness distribution and heat transfer coefficient of refrigerant outside the titanium tube was studied by numerical simulation. The results show that in the E (elliptic coefficient) range of 1.0-1.7, the average thickness of the liquid film is thinner, the flow velocity of the liquid film is increased, the area of the dry wall is reduced, the heat transfer boundary layer is thinner and the heat transfer effect is improved significantly with the increase of E. Compared with circular tube, when E=1.7, the average thickness of the liquid film is reduced by 26.21%, the flow velocity of the liquid film is increased by 20.81%, the area of the dry wall is reduced by 86.00% and the average heat transfer coefficient outside tube is increased by 8.67%. However, in the E range of 1.8-2.0, the average thickness of the liquid film and the area of dry wall are increased. Therefore, too large elliptic coefficient is not conducive to heat transfer enhancement.
Keywords:lithium bromide refrigeration    falling film evaporation    vapor-liquid two-phase flow    numerical simulation    elliptical tube    
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