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微小反应器中流场测温技术研究

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摘要 在微小流体反应器中,随着对反应精度要求的逐渐增高,系统中温度精度的控制和测量也变得越来越重要。但由于微小反应器量级和敏感度的特殊性,测温方法除了要求测温范围广、易操作、可重复、具有经济可行性之外,还要求测温过程不对微小流体产生扰动,且具有微米级别分辨率,能测量出流体温度场分布。本文将综述近年来国内外对微小反应器中流场测温技术的发展近况。
作者 袁方凌
出处 《科技视界》 2013年第30期10-11,共2页 Science & Technology Vision
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参考文献13

  • 1王玉田,王冬生,崔立超.基于快速傅里叶变换的荧光测温仪[J].测控技术,2006,25(11):18-20. 被引量:2
  • 2Hong-Shang Peng,Shi-Hua Huang,Otto S. Wolfbeis. Ratiometric fluorescent nanoparticles for sensing temperature[J]. Nanopart Res ,2010,12:2729-2733.
  • 3Peng HS, Stich M, Yu JB et al . Luminescent europium (III) nanoparticles for sensing and imaging of temperaturein the physiological range [J]. Adv Mater 2010,22:716-719.
  • 4H. Aoki, T. Kan, N. Binh-Khiem, K. Matsumoto,I. Shimoyama.Micro bead type temperature sensor with ratiometfic fluorescenced yesencapsullated byparylene[J]. MEMS 2011, Cancun, MEXICO, January 23-27.
  • 5Hong Dinh Duong, Jong I1 Rhee. Exploitation of thermo-effect of rhodamine B entrapped in sol - gel matrix and silica gel for temperature detection [J]. Sensors and Actuators B 124,2007,18-23.
  • 6W.博彻尔斯用光纤光栅在反应器中测量温度分布,中国,200580021820.8[P].2006.1.5.
  • 7张曦,翁文国,张嘉锋,何世平.液晶测温测速技术在流体实验中的应用[J].中国科学技术大学学报,2000,30(1):51-55. 被引量:12
  • 8J.F. de Jong, S.O. Odu, M.S. van Buijtenen, N.G. Deen, M. van Sint Annaland, J.A.M. Kuipers.Development and validation of a novel Digital Image Analysis method for fluidized bed Particle Image Velocimetry [J].Powder Technology,2012 , 230,193-202.
  • 9王涛,胡学功,唐大伟.微槽群内汽液界面温度分布的红外热成像[J].华中科技大学学报(自然科学版),2008,36(10):129-132. 被引量:2
  • 10J. Christofferson,K. Maize,Y. Ezzahri,J. Shabani,X. Wang,A. Shakouri. Microscale and Nanoscale Thermal Characterization Techniques [J]. Journal of Electronic Packaging, December 2008, Vol. 130/041101-1.

二级参考文献14

  • 1张曦,周鹏,何世平,廖光煊.应用热色液晶测量射流撞击壁面温度分布[J].实验力学,1996,11(3):246-250. 被引量:8
  • 2鞠向阳,伍小平,何世平.用胶囊式液晶粒子同时测量流场的温度和速度[J].力学学报,1996,28(4):503-506. 被引量:4
  • 3胡学功,唐大伟.竖直毛细微槽群热沉中蒸发液体的干涸特性[J].化工学报,2007,58(3):575-580. 被引量:8
  • 4Grattan K T V,Palmer A W,Zhang Z.Development of a high-temperature fiber-optics thermometer probe using fluorescent decay[J].Rev.Sci.Instrum.,1991,62(5):1 210-1 213.
  • 5Sholes R R,Small J G.Fluorescent decay thermometer with biological applications[J].Rev.Sci.Instrum,1980,51(7):882-884.
  • 6ZHANG Zhi-yi,Grattan T V,Palmer A W.Temperature dependence of fluorescence lifetimes in Cr3 +-doped insulating crystal[J].Phys.Rev.B,1993,48(11):7 772-7 778.
  • 7Hu X G, Zhao Y H, Yan X H. A novel micro cooling system for eletronie devices using a micro capillary groove evaporator [J]. Journal of Enhanced Heat Transfer, 2004, 11(4): 407-416.
  • 8Hu X G, Tang D W. Experimental investigation on flow and thermal characteristics of a micro phase change cooling system with a microgroove evaporator[J]. International Journal of Thermal Sciences, 2007, 46:1 163-1 171.
  • 9Muwanga R, Hassan I. Local heat transfer measurements in microehannels using liquid crystal thermography methodology development and validation [J]. Journal of Heat Transfer, 2006, 128: 617-626.
  • 10Hohmann C, Stephan P. Microscale temperature measurement at an evaporating liquid meniscus[J]. Experimental Thermal and Fluid Science, 2002, 26:157-162.

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