Produktbild: Advanced Materials-Based Fluids for Thermal Systems
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Advanced Materials-Based Fluids for Thermal Systems

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Beschreibung

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

19.01.2024

Herausgeber

Hafiz Muhammad Ali

Verlag

Elsevier Science & Technology

Seitenzahl

326

Maße (L/B/H)

23,4/14,7/1,8 cm

Gewicht

558 g

Sprache

Englisch

ISBN

978-0-443-21576-6

Beschreibung

Portrait

Dr. Hafiz Muhammad Ali is a Chartered Engineer (CEng), a Fellow of Institute of Mechanical Engineers (FIMechE) UK, a Fellow of Higher Education Academy (FHEA) UK and Editor in Chief of Emerging Technologies and Materials in Thermal Engineering (Elsevier). He received his PhD in Mechanical Engineering from the School of Engineering and Materials Science (SEMS), Queen Mary, University of London, United Kingdom. He was a postdoc at Water and Energy Laboratory of University of California at Merced, United States. Recently, he has been serving as the Associate Professor at Department of Mechanical Engineering, and as Director of Renewable Energy Laboratory at King Fahd University of Petroleum and Minerals, Dhahran, Saudi Arabia.

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

19.01.2024

Herausgeber

Hafiz Muhammad Ali

Verlag

Elsevier Science & Technology

Seitenzahl

326

Maße (L/B/H)

23,4/14,7/1,8 cm

Gewicht

558 g

Sprache

Englisch

ISBN

978-0-443-21576-6

EU-Ansprechpartner

Zeitfracht Medien GmbH
Ferdinand-Jühlke-Straße 7
99095 Erfurt
DE
produktsicherheit@zeitfracht.de

Herstelleradresse

Elsevier Science & Technology
London Wall 125
EC2Y 5AS London
GB
tradeorders@elsevier.com

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  • Produktbild: Advanced Materials-Based Fluids for Thermal Systems
  • 1. Introduction to nanofluids
    2. Investigating magnetohydrodynamic natural convection in nanofluid¿saturated enclosures through asymptotic expansions
    3. Impact of nanoparticle aggregation and uniform horizontal magnetic field on melting heat transfer phenomena of nanofluid flow over rotating disk
    4. Application of nanofluids in refrigeration and air-conditioning
    5. Application of ferrofluids for heat transfer enhancement
    6. Nanofluids - magnetic field interaction for heat transfer enhancement
    7. Impact of nonlinear thermal radiation and ohmic heating on MHD darcy forchheimer flow of water-based carbon nanotubes in the presence of non-uniform heat source
    8. Thermophysical properties and heat transfer characteristic of copper oxide-based ethylene glycol/water as a coolant for car radiator
    9. Discussion on the stability of nanofluids for optimal thermal applications
    10. Flow boiling behaviour of nanofluids
    11. Entropy optimization of magneto nanofluid flow over a wedge under the Influence of magnetophoresis
    12. Non-axisymmetric Homann stagnation point flow of nanofluid towards a flat surface in presence nanoparticle diameter and solid-liquid interfacial layer
    13. On the hydrothermal performance of radiative hybrid nanofluid over a slippery revolving disk in presence of highly oscillating magnetic field
    14. Applications of nanofluids and future directions