Wilson, 2006 - Google Patents
Experimental investigation of nanofluid oscillating heat pipesWilson, 2006
View PDF- Document ID
- 15667694060729571573
- Author
- Wilson C
- Publication year
External Links
Snippet
An experimental investigation was conducted of oscillating heat pipes (OHP) charged with diamond nanofluid. By combining the high thermal conductivity of nanofluids with the high heat transport rate of OHPs, a new type of heat pipe was developed. The diamond nanofluid …
Classifications
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N25/00—Investigating or analyzing materials by the use of thermal means
- G01N25/18—Investigating or analyzing materials by the use of thermal means by investigating thermal conductivity
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Zufar et al. | Numerical and experimental investigations of hybrid nanofluids on pulsating heat pipe performance | |
Tharayil et al. | Thermal performance of miniature loop heat pipe with graphene–water nanofluid | |
Song et al. | Chaotic behavior of pulsating heat pipes | |
Peng et al. | Effect of nanoparticle size on nucleate pool boiling heat transfer of refrigerant/oil mixture with nanoparticles | |
Xing et al. | Performance of a vertical closed pulsating heat pipe with hydroxylated MWNTs nanofluid | |
Babin et al. | Steady-state modeling and testing of a micro heat pipe | |
Furberg et al. | Boiling heat transfer on a dendritic and micro-porous surface in R134a and FC-72 | |
Liu et al. | Experimental research on flow and heat transfer characteristics of latent functional thermal fluid with microencapsulated phase change materials | |
Lin et al. | Critical heat flux on flow boiling of methanol–water mixtures in a diverging microchannel with artificial cavities | |
Goodarzi et al. | Boiling flow of graphene nanoplatelets nano-suspension on a small copper disk | |
Ho et al. | Saturated pool boiling from carbon nanotube coated surfaces at different orientations | |
Zhang et al. | Experimental investigation of condensation heat transfer and pressure drop of R22, R410A and R407C in mini-tubes | |
Wagner et al. | High-resolution measurements at nucleate boiling of pure FC-84 and FC-3284 and its binary mixtures | |
Ji et al. | An experimental investigation of heat transfer performance in a polydimethylsiloxane (PDMS) oscillating heat pipe | |
Peng et al. | Influence of carbon nanotubes on nucleate pool boiling heat transfer characteristics of refrigerant–oil mixture | |
Deb et al. | Surface wettability change on TF nanocoated surfaces during pool boiling heat transfer of refrigerant R-141b | |
Su et al. | Enhancement of heat transport in oscillating heat pipe with ternary fluid | |
Xing et al. | Experimental study on thermal performance of a pulsating heat pipe with surfactant aqueous solution | |
Buffone et al. | Experimental investigation of the hydrodynamics and stability of an evaporating wetting film placed in a temperature gradient | |
Wu et al. | New experimental data of CO2 flow boiling in mini tube with micro fins of zero helix angle | |
Zhao et al. | Experimental study on transient heat transfer characteristics of intermittent spray cooling | |
Bryan et al. | Influence of flow regime, heat flux, and mass flux on electrohydrodynamically enhanced convective boiling | |
Pandey et al. | Bubble lifecycle during heterogeneous nucleate boiling | |
Baniamerian et al. | An experimental investigation of heat of vaporization of nanofluids | |
Wilson | Experimental investigation of nanofluid oscillating heat pipes |