Temperature Dependence of Thermal Conductivity Enhancement for Nanofluids

Зависимость повышения теплопроводности наножидкостей от температуры
Sarit K. Das, Nandy Putra, Peter Thiesen, Wilfried Roetzel
2003-07-17

Al2O3 and CuO nanoparticlesnanofluidstemperature dependencethermal conductivity enhancementthermal diffusivity measurement
Usual heat transfer fluids with suspended ultra fine particles of nanometer size are named as nanofluids, which have opened a new dimension in heat transfer processes. The recent investigations confirm the potential of nanofluids in enhancing heat transfer required for present age technology. The present investigation goes detailed into investigating the increase of thermal conductivity with temperature for nano fluids with water as base fluid and particles of Al2O3 or CuO as suspension material. A temperature oscillation technique is utilized for the measurement of thermal diffusivity and thermal conductivity is calculated from it. The results indicate an increase of enhancement characteristics with temperature, which makes the nanofluids even more attractive for applications with high energy density than usual room temperature measurements reported earlier.
1
A temperature oscillation technique was used to measure thermal diffusivity and calculate thermal conductivity for these nanofluids.
2
Enhancement of thermal conductivity becomes more pronounced at higher temperatures, improving suitability for high energy density applications compared to room-temperature values reported earlier.
3
The study confirms nanofluids' potential to enhance heat transfer performance beyond conventional fluids when temperature rises.
4
Thermal conductivity of water-based nanofluids containing Al2O3 or CuO nanoparticles increases with temperature.

Nanofluids consisting of water-based suspensions of Al2O3 or CuO nanoparticles

Temperature dependence of thermal conductivity enhancement (measured via thermal diffusivity using a temperature oscillation technique)

Publication Details
Publication Date
2003-07-17
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Sarit K. Das
Nandy Putra
Peter Thiesen
Wilfried Roetzel
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%