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Journal ArticleDOI

Heat transfer enhancement using Al2O3–water nanofluid for an electronic liquid cooling system

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TLDR
In this article, the authors investigated the behavior and heat transfer enhancement of a particular nanofluid, Al2O3 nanoparticle-water mixture, flowing inside a closed system that is destined for cooling of microprocessors or other electronic components.
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This article is published in Applied Thermal Engineering.The article was published on 2007-06-01. It has received 575 citations till now. The article focuses on the topics: Nanofluid & Heat transfer enhancement.

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A review on applications and challenges of nanofluids

TL;DR: It has been found nan ofluids have a much higher and strongly temperature-dependent thermal conductivity at very low particle concentrations than conventional fluids, which can be considered as one of the key parameters for enhanced performances for many of the applications of nanofluids.
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A review of the applications of nanofluids in solar energy

TL;DR: In this article, the authors investigated the effects of nanofluids on the performance of solar collectors and solar water heaters from the efficiency, economic and environmental considerations viewpoints, and made some suggestions to use the nanoparticles in different solar thermal systems such as photovoltaic/thermal systems, solar ponds, solar thermoelectric cells, and so on.
Journal ArticleDOI

Applications of Nanofluids: Current and Future:

TL;DR: In this article, the authors describe suspensions of nanoparticles in fluids that show significant enhancement of their properties at modest nanoparticle concentrations, i.e., at nanoparticles' concentrations.
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Enhancement of heat transfer using nanofluids—An overview

TL;DR: A colloidal mixture of nano-sized particles in a base fluid, called nanofluids, tremendously enhances the heat transfer characteristics of the original fluid, and is ideally suited for practical applications due to its marvelous characteristics.
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An experimental study on the heat transfer performance and pressure drop of TiO2-water nanofluids flowing under a turbulent flow regime

TL;DR: In this paper, the heat transfer coefficient and friction factor of the TiO 2 -water nanofluids flowing in a horizontal double tube counter-flow heat exchanger under turbulent flow conditions, experimentally.
References
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Application of metallic nanoparticle suspensions in advanced cooling systems

S. Lee, +1 more
TL;DR: The thermal conductivities of fluids that contain suspended solid metallic particles are significantly enhanced over those of conventional heat transfer fluids as discussed by the authors, which is a limitation for the development of energy-efficient heat transfer fluid that are required in many cooling applications.
Book

Heat Transfer With Applications

Kirk D Hagen
TL;DR: This guide on the basics of heat transfer focuses on applications and problem-solving rather than theory and mathematics demonstrating the critical connection between conceptual principles and their actual application in real-world thermal systems.

Nanofluids Heat Transfer Performance for Cooling of High Heat Output Microprocessor

TL;DR: In this article, the heat transfer performance of two nanofluids, namely water-γAl2O3 and Ethylene Glycol- γAl 2O3, for cooling of high heat output microprocessors has been numerically investigated.
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