工程热物理学报
工程熱物理學報
공정열물이학보
JOURNAL OF ENGINEERING THERMOPHYSICS
2009年
12期
2105-2109
,共5页
盖东兴%刘志春%杨金国%刘伟
蓋東興%劉誌春%楊金國%劉偉
개동흥%류지춘%양금국%류위
环路热管%平板式蒸发器%实验研究%系统仿真
環路熱管%平闆式蒸髮器%實驗研究%繫統倣真
배로열관%평판식증발기%실험연구%계통방진
loop heat pipe%flat evaporator%experimental investigation%system simulation
环路热管是一种靠蒸发器的毛细芯产生毛细力来驱动回路运行,利用工质相变来传递热量的高效传热装置.本文研制了一套不锈钢外壳,以氨为工质的小型平板式环路热管(mLHP),并着重研究其在不同热负荷条件下启动特性及变工况条件下的稳定运行特征,通过对平板 mLHP 运行机制理论分析,建立了合理的数学物理模型,实现了对整个系统动态仿真.实验结果表明,小型平板式 mLHP 可以在不同热流密度下快速启动,并具有良好的适应变热负荷能力.实现了平板式 mLHP 系统中各个主要节点的压力、温度和流量的动态仿真,与实验数据对比,仿真结果和实验数据吻合较好,加深了对 LHP 系统运行机理的理解.通过实验和动态仿真结果对系统结构进行优化,为应用在电子器件散热的高效率平板式 mLHP 系统的设计与优化提供依据.
環路熱管是一種靠蒸髮器的毛細芯產生毛細力來驅動迴路運行,利用工質相變來傳遞熱量的高效傳熱裝置.本文研製瞭一套不鏽鋼外殼,以氨為工質的小型平闆式環路熱管(mLHP),併著重研究其在不同熱負荷條件下啟動特性及變工況條件下的穩定運行特徵,通過對平闆 mLHP 運行機製理論分析,建立瞭閤理的數學物理模型,實現瞭對整箇繫統動態倣真.實驗結果錶明,小型平闆式 mLHP 可以在不同熱流密度下快速啟動,併具有良好的適應變熱負荷能力.實現瞭平闆式 mLHP 繫統中各箇主要節點的壓力、溫度和流量的動態倣真,與實驗數據對比,倣真結果和實驗數據吻閤較好,加深瞭對 LHP 繫統運行機理的理解.通過實驗和動態倣真結果對繫統結構進行優化,為應用在電子器件散熱的高效率平闆式 mLHP 繫統的設計與優化提供依據.
배로열관시일충고증발기적모세심산생모세력래구동회로운행,이용공질상변래전체열량적고효전열장치.본문연제료일투불수강외각,이안위공질적소형평판식배로열관(mLHP),병착중연구기재불동열부하조건하계동특성급변공황조건하적은정운행특정,통과대평판 mLHP 운행궤제이론분석,건립료합리적수학물리모형,실현료대정개계통동태방진.실험결과표명,소형평판식 mLHP 가이재불동열류밀도하쾌속계동,병구유량호적괄응변열부하능력.실현료평판식 mLHP 계통중각개주요절점적압력、온도화류량적동태방진,여실험수거대비,방진결과화실험수거문합교호,가심료대 LHP 계통운행궤리적리해.통과실험화동태방진결과대계통결구진행우화,위응용재전자기건산열적고효솔평판식 mLHP 계통적설계여우화제공의거.
Loop heat pipe (LHP) is a heat transfer device which operating principle is based on the evaporation and condensation of a working fluid, and which use the capillary pumping forces to ensure the fluid circulation. A miniature loop heat pipe (mLHP) made of stainless steel and ammonia as the working fluid is developed to study the start-up performance with different heat loads and the operating characteristics under step power cycles. And a mathematical model is developed to simulate the transport performance of the mLHP system by analyzing the operation mechanism of the mLHP. The experimental results show that the mLHP could achieve steady state in very short time at different heat loads and the response to the step power is speedy. The simulation of the system shows that the changes in pressure, temperature and mass-flux rate with the time of each zone of mLHP successfully and the simulated results fit for the experimental results very well. With the experimental and simulated results, the physical mechanism of transport process of mLHP with a flat evaporator is verified. The results of experiment and simulation are useful to design and optimize the structure of an mLHP, and used of heat dissipation of electronic apparatus.