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Information Journal Paper

Title

EFFECT OF NONIONIC SURFACTANT ADDITIVES ON THE PERFORMANCE OF NANOFLUID IN THE HEAT EXCHANGER

Pages

  18-30

Abstract

 A NANOFLUID is mixture of nano sized particles and a base fluid. This paper investigates by using laboratory based double pipe HEAT EXCHANGER model, the performance of NANOFLUID containing about 48.46nm particle size nanoparticles (ZnO) without or with addition of NONIONIC SURFACTANT Rokanol K7 (500ppm) into the base fluid double distilled water to prepared three different concentrations 1.0%, 2% and 3% (v/v) of ZnO water or ZnO-RK7. Effects of temperature and concentration of nanoparticles on VISCOSITY and HEAT TRANSFER COEFFICIENT in HEAT EXCHANGER are investigated. The experimental results shows that the VISCOSITY of NANOFLUIDs increased with increasing concentration of fluid whereas decreased with increasing temperature from 20 to 60ºC. However, it has been also observed that HEAT TRANSFER COEFFICIENT increases with the operating temperature and concentration of nanoparticles. The conclusion derived for the study is that overall HEAT TRANSFER COEFFICIENT enhanced with increasing concentration upto 3% of ZnO-RK7 as compared to without surfactant NANOFLUIDs.

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    Cite

    APA: Copy

    LAKHAWAT, GAJANAN P., UGWEKAR, RAJENDRA P., SUKE, SANVIDHAN G., & NANOTI, VIVEK M.. (2017). EFFECT OF NONIONIC SURFACTANT ADDITIVES ON THE PERFORMANCE OF NANOFLUID IN THE HEAT EXCHANGER. INTERNATIONAL JOURNAL OF NANO DIMENSION (IJND), 8(1), 18-30. SID. https://sid.ir/paper/322370/en

    Vancouver: Copy

    LAKHAWAT GAJANAN P., UGWEKAR RAJENDRA P., SUKE SANVIDHAN G., NANOTI VIVEK M.. EFFECT OF NONIONIC SURFACTANT ADDITIVES ON THE PERFORMANCE OF NANOFLUID IN THE HEAT EXCHANGER. INTERNATIONAL JOURNAL OF NANO DIMENSION (IJND)[Internet]. 2017;8(1):18-30. Available from: https://sid.ir/paper/322370/en

    IEEE: Copy

    GAJANAN P. LAKHAWAT, RAJENDRA P. UGWEKAR, SANVIDHAN G. SUKE, and VIVEK M. NANOTI, “EFFECT OF NONIONIC SURFACTANT ADDITIVES ON THE PERFORMANCE OF NANOFLUID IN THE HEAT EXCHANGER,” INTERNATIONAL JOURNAL OF NANO DIMENSION (IJND), vol. 8, no. 1, pp. 18–30, 2017, [Online]. Available: https://sid.ir/paper/322370/en

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