• Title of article

    Investigation of Nanoparticles Morphology on Viscosity of Nanofluids and New Correlation for Prediction

  • Author/Authors

    Ghozatloo، A. نويسنده Faculty member of Research Institute of Petroleum Industry (RIPI), West Blvd. Azadi Sport Complex, P.O. Box: 14665-137, Tehran, Iran , , Azimi Maleki، S. نويسنده Department of Chemical Engineering, College of Chemical Engineering, Mahshahr Branch, Islamic Azad University, Mahshahr, Iran. , , Shariaty-Niassar، M. نويسنده , , Morad Rashidi، A. نويسنده Faculty member of Research Institute of Petroleum Industry (RIPI), West Blvd. Azadi Sport Complex, P.O. Box: 14665-137, Tehran, Iran ,

  • Issue Information
    فصلنامه با شماره پیاپی 0 سال 2015
  • Pages
    8
  • From page
    161
  • To page
    168
  • Abstract
    اين مقاله بررسي هاي آزمايشگاهي جهت ارزيابي تاثير مورفولوژي نانوذرات بر روي ويسكوزيته نانوسيال ارايه مي دهد. آب و اتيلن گليكول به عنوان سيال پايه مورد استفاده قرار گرفتند. روش دو مرحله اي براي تهيه نانوسيال استفاده شد. نانوذرات سيليكا، نانولوله كربني . گرافن به صورت جداگانه با كسر حجمي مشخص داخل سيال پايه ديسپرس شدند. پايداري نانوساختارها با افزودن سورفكتانت و اعمال اولتراسونيك تثبيت شد. ويسكوزيته نانوسيال بوسيله ويسكومتر بروكفيلد در دماي محيط اندازه گيري شد. نتايج به دست ]مده نشان داد كه اولا ويسكوزيته سيال با افزايش كسر حجمي نانوذرات افزايش مي يابد. در ادامه نتايج مدل هاي تيوري با نتايج آزمايشگاهي مقايسه شده و انحراف آن ها محاسبه گرديد. براي كاهش انحراف، همبستگي بر اساس مورفولوژي نانوساختارها ارايه شد.
  • Abstract
    This article presents an experimental investigation on effects of morphology of nanoparticles on the viscosity nanofluids (NFs). Water and ethylene glycol were used as base fluids. A two step method was used for preparation of NFs. SiO2 nanoparticles, CNT and graphene nano sheets were dispersed in the base fluids separately with the volume fraction ranging from 0.05% to 1.5%. Stability of the nanoparticles was established by adding adequate surfactant and sonication enough time. Then viscosity of the NFs was measured by Brookfield viscometer at fix ambient temperature. First, it has been concluded that, viscosity of NFs increases significantly with increasing of nanoparticle volume fraction. Then the results of theoretical models (Einstein, Brinkman, Batchelor and Wang) were compared with experimental data and the deviation of theme was calculated. In order to reduce of this deviation, a correlation was developed based on the geometry of nanoparticles. The modified models showed reasonably better agreement with the experimental results.
  • Journal title
    Journal of NanoStructures
  • Serial Year
    2015
  • Journal title
    Journal of NanoStructures
  • Record number

    2387947