The Study of Nanofluids Rheological Properties
سال
: 2008
چکیده: Nanofluids are suspension of metallic or metal-oxide solid nanoparticles with size varying generally from 1 to 100 nm dispersed in heat transfer liquids such as water, ethylene glycol and engine oil. It has been found that important heat transfer enhancement may be achieved using nanofluids instead of conventional fluids. This is of major importance for electronics and microelectronics where liquids cooling systems are necessary and miniaturizing is needed. In this regard, determination of the nanofluids viscosity is essential to establishing adequate pumping power as well as the convective heat transfer coefficient, because the prandtl number and Reynolds number are functions of viscosity. The conventional correlations such as Einstein model [1] consider only the nanoparticles volume concentration on nanofluid viscosity prediction. Nguyen et al. [2, 3] during their experimental investigation studied the influence of temperature and the particle size on dynamic viscosities of water/ Al2O3 and water/CuO suspension. In the present study the various models for nanofluids viscosity determination is studied and the advantage and disadvantage of each models discussed.
کلیدواژه(گان): nanofluid- rheological properties- hystersis- viscosity
کالکشن
:
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آمار بازدید
The Study of Nanofluids Rheological Properties
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contributor author | سعید زینالی هریس | en |
contributor author | محسن خدادادی یزدی | en |
contributor author | Saeed Zeinali Heris | fa |
contributor author | Mohsen Khodadadi Yazdi | fa |
date accessioned | 2020-06-06T13:51:04Z | |
date available | 2020-06-06T13:51:04Z | |
date copyright | 10/28/2008 | |
date issued | 2008 | |
identifier uri | http://libsearch.um.ac.ir:80/fum/handle/fum/3371815 | |
description abstract | Nanofluids are suspension of metallic or metal-oxide solid nanoparticles with size varying generally from 1 to 100 nm dispersed in heat transfer liquids such as water, ethylene glycol and engine oil. It has been found that important heat transfer enhancement may be achieved using nanofluids instead of conventional fluids. This is of major importance for electronics and microelectronics where liquids cooling systems are necessary and miniaturizing is needed. In this regard, determination of the nanofluids viscosity is essential to establishing adequate pumping power as well as the convective heat transfer coefficient, because the prandtl number and Reynolds number are functions of viscosity. The conventional correlations such as Einstein model [1] consider only the nanoparticles volume concentration on nanofluid viscosity prediction. Nguyen et al. [2, 3] during their experimental investigation studied the influence of temperature and the particle size on dynamic viscosities of water/ Al2O3 and water/CuO suspension. In the present study the various models for nanofluids viscosity determination is studied and the advantage and disadvantage of each models discussed. | en |
language | English | |
title | The Study of Nanofluids Rheological Properties | en |
type | Conference Paper | |
contenttype | External Fulltext | |
subject keywords | nanofluid- rheological properties- hystersis- viscosity | en |
identifier link | https://profdoc.um.ac.ir/paper-abstract-1007114.html | |
conference title | 2nd international congress on nanoscience & nanotechnology | en |
conference location | tabriz | fa |
identifier articleid | 1007114 |