中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Chaotic behavior of pulsating heat pipes

文献类型:期刊论文

作者Song, Yanxi; Xu, Jinliang
刊名international journal of heat and mass transfer
出版日期2009-06-01
卷号52期号:13-14页码:2932-2941
关键词Pulsating heat pipe Nonlinear analysis Correlation dimension Kolmogorov entropy
ISSN号0017-9310
通讯作者xujl@ms.giec.ac.cn
中文摘要chaotic behavior of closed loop pulsating heat pipes (phps) was studied. the phps were fabricated by capillary tubes with outer and inner diameters of 2.0 and 1.20 mm. fc-72 and deionized water were used as the working fluids. experiments cover the following data ranges: number of turns of 4, 6, and 9, inclination angles from 5 degrees (near horizontal) to 90, (vertical), charge ratios from 50% to 80%, heating powers from 7.5 to 60.0 w. the nonlinear analysis is based on the recorded time series of temperatures on the evaporation, adiabatic, and condensation sections. the present study confirms that phps are deterministic chaotic systems. autocorrelation functions (acf) are decreased versus time, indicating prediction ability of the system is finite. three typical attractor patterns are identified. hurst exponents are very high, i.e., from 0.85 to 0.95, indicating very strong persistent properties of phps. curves of correlation integral versus radius of hypersphere indicate two linear sections for water phps, corresponding to both high frequency, low amplitude, and low frequency, large amplitude oscillations. at small inclination angles near horizontal, correlation dimensions are not uniform at different turns of phps. the non-uniformity of correlation dimensions is significantly improved with increases in inclination angles. effect of inclination angles on the chaotic parameters is complex for fc-72 phps, but it is certain that correlation dimensions and kolmogorov entropies are increased with increases in inclination angles. the optimal charge ratios are about 60-70%, at which correlation dimensions and kolmogorov entropies are high. the higher the heating power, the larger the correlation dimensions and kolmogorov entropies are. for most runs, large correlation dimensions and kolmogorov entropies correspond to small thermal resistances, i.e., better thermal performance, except for fc-72 phps at small inclination angles of theta < 15 degrees.
英文摘要chaotic behavior of closed loop pulsating heat pipes (phps) was studied. the phps were fabricated by capillary tubes with outer and inner diameters of 2.0 and 1.20 mm. fc-72 and deionized water were used as the working fluids. experiments cover the following data ranges: number of turns of 4, 6, and 9, inclination angles from 5 degrees (near horizontal) to 90, (vertical), charge ratios from 50% to 80%, heating powers from 7.5 to 60.0 w. the nonlinear analysis is based on the recorded time series of temperatures on the evaporation, adiabatic, and condensation sections. the present study confirms that phps are deterministic chaotic systems. autocorrelation functions (acf) are decreased versus time, indicating prediction ability of the system is finite. three typical attractor patterns are identified. hurst exponents are very high, i.e., from 0.85 to 0.95, indicating very strong persistent properties of phps. curves of correlation integral versus radius of hypersphere indicate two linear sections for water phps, corresponding to both high frequency, low amplitude, and low frequency, large amplitude oscillations. at small inclination angles near horizontal, correlation dimensions are not uniform at different turns of phps. the non-uniformity of correlation dimensions is significantly improved with increases in inclination angles. effect of inclination angles on the chaotic parameters is complex for fc-72 phps, but it is certain that correlation dimensions and kolmogorov entropies are increased with increases in inclination angles. the optimal charge ratios are about 60-70%, at which correlation dimensions and kolmogorov entropies are high. the higher the heating power, the larger the correlation dimensions and kolmogorov entropies are. for most runs, large correlation dimensions and kolmogorov entropies correspond to small thermal resistances, i.e., better thermal performance, except for fc-72 phps at small inclination angles of theta < 15 degrees. (c) 2009 elsevier ltd. all rights reserved.
WOS标题词science & technology ; physical sciences ; technology
类目[WOS]thermodynamics ; engineering, mechanical ; mechanics
研究领域[WOS]thermodynamics ; engineering ; mechanics
关键词[WOS]flow ; visualization
收录类别SCI
资助信息national natural science foundation of china [50825603]; natural science foundation of china [50776089]
原文出处http://www.sciencedirect.com/science/journal/00179310
语种英语
WOS记录号WOS:000266216700004
公开日期2010-09-16
源URL[http://ir.giec.ac.cn/handle/344007/3340]  
专题中国科学院广州能源研究所
作者单位Chinese Acad Sci, Guangzhou Inst Energy Convers, Micro Energy Syst Lab, Guangzhou 510640, Guangdong, Peoples R China
推荐引用方式
GB/T 7714
Song, Yanxi,Xu, Jinliang. Chaotic behavior of pulsating heat pipes[J]. international journal of heat and mass transfer,2009,52(13-14):2932-2941.
APA Song, Yanxi,&Xu, Jinliang.(2009).Chaotic behavior of pulsating heat pipes.international journal of heat and mass transfer,52(13-14),2932-2941.
MLA Song, Yanxi,et al."Chaotic behavior of pulsating heat pipes".international journal of heat and mass transfer 52.13-14(2009):2932-2941.

入库方式: OAI收割

来源:广州能源研究所

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