Phase change driving mechanism and modeling for heat pipe with porous wick

来源 :Chinese Science Bulletin | 被引量 : 0次 | 上传用户:lwllwl200315
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
According to heat pipe theory, capillary force is the only driving force for the circle of working fluid in heat pipe with porous wick. By developing a simulating circuit of liquid and vapor flow in heat pipe with porous wick, this paper presents a new driving mechanism which is from phase change of fluid. Furthermore, by analyzing transport process of working fluid between evaporation and condensation interfaces, a mathematical model is developed to describe this driving mechanism. Besides, calculating examples are given for heat pipe with water as working fluid to predict its driving force and flow resistance. By applying the model presented in the paper, thermal design and calculation for heat pipe with porous wick, especially for miniature heat pipe, can be made correctly, and phase change driving mechanism of working fluid can be explained, which thereby leads to a better understanding of heat transfer limitation of heat pipe with porous wick. According to heat pipe theory, capillary force is the only driving force for the circle of working fluid in heat pipe with porous wick, this paper presents a new driving mechanism which is from phase change of fluid. Yet, by analyzing transport process of working fluid between evaporation and condensation interfaces, a mathematical model is developed to describe this driving mechanism. By applying the model presented in the paper, thermal design and calculation for heat pipe with porous wick, especially for miniature heat pipe, can be made correctly, and phase change driving mechanism of working fluid can be explained, which thereby leads to a better understanding of heat transfer limitation of heat pipe with porous wick.
其他文献
她虽然是一名普普通通的农家妇女,却用她那一双温柔的双手创造出今男人羡慕的业绩。用她那一副单薄的双肩挑起了家庭致富的重担,用她那超人的胆识勇气打开了富裕之门,走上了
本文主要探索了光照致活的半导体氧化物(Tio_2)以及半导体硫化物(cds)对苯进行催化氧化的反应。根据实验现象,分别论述了其反应机理,建立了单光子作用模型。 In this paper,
研究了辐照线性低密度聚乙烯/乙烯-醋酸乙烯酯共聚物(LLDPE/EVA)共混体系和线性低密度聚乙烯/三元乙丙橡胶(LLDPE/EPDM)共混体系的溶胶分数(S)与辐照剂量(R)间的关系,发现适
一、了不起的中国人邹德骏,一个普普通通的中国人,又是一个轰动了世界的发明家。 1992年,在法国巴黎举办的第83届国际发明展览会上,他以自己发明的高效工夹具一举夺取了最高
目的探析先兆流产治疗中利用地屈孕酮与黄体酮胶丸的疗效。方法从我院2015年8月至2016年8月收治的先兆流产患者中,随机抽取62例展开分组研究,即甲组31例,乙组31例。甲组应用
近日,我应中国人民银行佳木斯市分行行长王瑛的邀请,来到佳木斯。这里有了翻天覆地的变化。这变化的后面有着许多实干家的汗水,他们在奋斗、在探索,像春蚕般在奉献。来佳木
Ag_3[(C_5H_4N)NH_2]_4(NO_3)_3晶体属斜方晶系,空间群p a=0.799 0(2)nm,b=1.675 0(3)nm,c=2.102 0(3)nm,结构精修到R=0.043,z=1.400,该络合物分子中配体氨基吡啶桥连两个银
随着改革开放的发展和投资环境的改善,北京市利用外债资金的规模及领域不断扩大,结构日趋合理,管理日臻完善,效益颇为显著。1990年以来的八年间,本市累计借用直接外债资金53
写这个题目是受到了一本小书的影响,叫《香港新生代》,用的是访谈的形式。访谈对象都是80年代在香港政经文教界十分活跃的70年代大学毕业生。区别是,我这儿的新生代是指现今
由于粒径大小是表征均分散胶体化合物粒子的一个重要参量,尤其对催化剂、燃料、药物输送及新型陶瓷等领域来说,粒径的大小直接关系到材料性能的优劣。因此控制