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纳米流体应用于平板式热管热回收装置的实验研究 被引量:3

Experimental Study on Flat Plate Heat Pipe Heat Recovery Equipment with Nanofluid
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摘要 本文针对一种适用于民用建筑热回收的平板式热管热回收装置,分别以体积浓度为0.001%、0.01%以及0.1%的δ-Al2O3-R141b纳米流体作为工质,对该热回收装置的热回收效率进行了实验研究,并与将R141b作为工质时的热回收效率进行了比较。实验结果显示:与采用R141b工质相比,体积浓度为0.01%的纳米流体的热回收效率最好,体积浓度为0.001%的纳米流体的热回收效率与R141b基本保持一致;采用体积浓度为0.1%的纳米流体作为工质时,热回收装置的效率会大幅度降低。 In this paper,an experiment on the flat plate heat pipe heat recovery equipment applied for residential buildings was carried out,in which δ-Al2O3-R141b nanofluid with the volume fraction of 0. 001% ,0. 01% and 0. 1% were used as the working fluid. The heat recovery efficieneies were measured and compared with those of the working fluid of R141b. The results indicated that the volume fraction of 0. 01% has the highest heat recovery efficiency, the heat recovery efficiency of the volume fraction of 0. 001% was almost the same as that of the working fluid of R141b,while for the volume fraction of 0. 1% ,the efficiency decreased greatly.
出处 《建筑科学》 北大核心 2012年第6期31-35,共5页 Building Science
基金 2010年北京工业大学人才科教深化计划-创新人才项目(00400054R4001)
关键词 纳米流体 热回收效率 平板式热管热回收装置 nanofluid heat recovery efficiency fiat plate heat pipe heat recovery equipment
作者简介 张冀(1988-),男,在读硕士研究生cyzhangjil68@sina.com
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参考文献7

  • 1Choi SUS. Enhancing thermal conductivity of fluids with nanoparticIes [ J ]. American Society of Mechanical Engineem, Fluids Engineering Division ( Publication ) FED, 1995, 231 (66) :99 - 105.
  • 2宣益民,李强.纳米流体能量传递理论与应用[M].北京:科学出版社,2009.
  • 3Xuan Yimin, Li Qiang. Heat transfer enhancement of nanofluids [ J]. International Journal of Heat and Fluid Flow,2000,21 ( 1 ) : 58 - 64.
  • 4Eastman JA, Choi SUS, Li S, et al. Anomalously increased effective thermal conductivities of ethylene glycol based nanofluids containing copper nanoparticles [ J ]. Applied Physics Letters,2001,78(6) :718 - 720.
  • 5李强,宣益民.纳米流体热导率的测量[J].化工学报,2003,54(1):42-46. 被引量:50
  • 6赵耀华,邹飞龙,刁彦华.新型平板热管式太阳能集热技术[J].工程热物理学报,2010,31(12):2061-2064. 被引量:11
  • 7国家质量监督检验检疫总局,卫生部,国家环境保护总局.GB/T18883-2002室内空气质量标准[S].北京:中国环境科学出版社,2003.

二级参考文献18

  • 1胡润青,李俊峰.全球太阳能热水器产业与技术发展状况及启示[J].太阳能,2007(2):8-11. 被引量:19
  • 2[1]Eastman J A,Choi U S,Li S,Thompson L J,Lee S.Enhanced Thermal Conductivity Through the Development of Nanofluids.In: Komarneni S,Parker J C,Wollenberger H J, eds. Proceedings of the Symposium on Nanophase and Nanocomposite Materials.Boston: Materials Research Society, Pittsburgh, PA, 1997. 3-11
  • 3[2]Xuan Y,Li Q.Heat Transfer Enhancement of Nanofluids.Int. J. of Heat and Fluid Flow, 2000, 21(1): 58-64
  • 4[3]Lee S, Choi U S, Li S, Eastman J A. Measuring Thermal Conductivity of Fluids Containing Oxide Nanoparticles.J. of Heat Transfer, 1999, 121: 280-289
  • 5[4]Eastman J A, Choi US, Li S. Development of Energy-efficient Nanofluids for Heat Transfer Applications.Report of Argonne National Laboratory
  • 6[5]Lee S,Choi U S.Application of Metallic Nanoparticle Suspensions in Advanced Cooling Systems.In: Kwon Y,Davis D,Chung H, eds. Recent Advances in Solids/Structures and Application of Metallic Materials.PVP-vol.342/MD-vol.72. New York: ASME, 1996.227-234
  • 7[6]Carslaw H S, Jaeger J C. Conduction of Heat in Solids.2nd ed. London: Oxford University Press, 1959. 510
  • 8[7]Maxwell J C. A Treatise on Electricity and Magnetism. 2nd ed. U K: Clarendon Press, 1881. 435
  • 9[8]Hamilton R L, Crosser O K.Thermal Conductivity of Heterogeneous Two-component Systems.Industrial and Engineering Chemistry Fundamentals, 1962, 1(3): 187-191
  • 10Hussein H M S, Mohamad M A, El-Asfouri A S. Optimization of a Wickless Heat Pipe Flat Solar Collector [J]. Energy Conversion &; Management, 1999, 40:1949-1961.

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