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EXPERIMENTAL INVESTIGATION ON SILVER-GRAPHENE HYBRID NANOFLUID DROPLET EVAPORATION AND WETTING CHARACTERISTICS OF ITS NANOSTRUCTURED DROPLET RESIDUE

  • Farooq R. Siddiqui*
  • , Edwin C. Y. Tso
  • , Sau C. Fu
  • , Christopher Y. H. Chao
  • , Huihe Qiu
  • *Corresponding author for this work

Research output: Chapters, Conference Papers, Creative and Literary WorksRGC 32 - Refereed conference paper (with host publication)peer-review

Abstract

Droplet evaporation is a complex phase change process with a wide range of cooling applications, such as spray cooling and dropwise hotspot cooling in microelectronics, to name a few. The hybrid nanofluid droplet evaporation and its residue effects on evaporation of the subsequent hybrid nanofluid droplet is investigated in this research. Silver-graphene (Ag-GNP) hybrid nanofluid exhibiting synergistic thermal properties is investigated and prepared by dispersing silver nanoparticles along with graphene nanoplatelets in water at 0.1% volume fraction and with different mixing ratios, followed by ultrasonication. The evaporation rate and wetting characteristics of a 3 μl volume of Ag-GNP hybrid nanofluid droplet on a copper surface were studied using an optical tensiometer. Once dried, the nanoporous structure of the residue surface was examined using a scanning electron microscope, while the surface roughness was measured using an optical profiler. Experiments were continued to further investigate the evaporation rate and wetting effects of the subsequent Ag-GNP hybrid nanofluid droplet over the residue surface. The results showed improved wetting characteristics, with 88% reduction in initial static contact angle and 163-196% enhancement in evaporation rate of the subsequent Ag-GNP hybrid nanofluid droplets over the residue surfaces as compared to the copper surface.
Original languageEnglish
Title of host publicationFluid Measurement and Instrumentation; Micro and Nano Fluid Dynamics
PublisherAmerican Society of Mechanical Engineers
Number of pages8
Volume4
ISBN (Print)9780791859070
DOIs
Publication statusPublished - Jul 2019
EventASME-JSME-KSME 2019 8th Joint Fluids Engineering Conference, AJK Fluids 2019 - San Francisco, United States
Duration: 28 Jul 20191 Aug 2019
https://event.asme.org/Events/media/library/resources/ajk/AJKFluids2019TechnicalProgram.pdf

Publication series

NameASME-JSME-KSME Joint Fluids Engineering Conference, AJKFluids

Conference

ConferenceASME-JSME-KSME 2019 8th Joint Fluids Engineering Conference, AJK Fluids 2019
PlaceUnited States
CitySan Francisco
Period28/07/191/08/19
Internet address

Research Keywords

  • Hybrid nanofluid
  • droplet evaporation
  • nanostructured surface
  • droplet residue

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