Nanofluids for heat and mass transfer fundamentals, sustainable manufacturing and applications

Intro -- Nanofluids for Heat and Mass Transfer: Fundamentals, Sustainable Manufacturing and Applications -- Copyright -- Contents -- Foreword -- Section A: Introduction to nanofluids: Fundamentals and synthesis -- 1 Introduction to nanofluids -- 1.1 Introduction -- 1.2 Colloids and nanofluids -- 1.3...

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Bibliographische Detailangaben
1. Verfasser: Bhanvase, Bharat A. (VerfasserIn)
Weitere Verfasser: Barai, Divya (VerfasserIn)
Format: UnknownFormat
Sprache:eng
Veröffentlicht: London, San Diego, Cambridge, Oxford Academic Press 2021
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Zusammenfassung:Intro -- Nanofluids for Heat and Mass Transfer: Fundamentals, Sustainable Manufacturing and Applications -- Copyright -- Contents -- Foreword -- Section A: Introduction to nanofluids: Fundamentals and synthesis -- 1 Introduction to nanofluids -- 1.1 Introduction -- 1.2 Colloids and nanofluids -- 1.3 Scope -- 1.4 Classification of nanofluids -- 1.4.1 Based on type of nanomaterial -- 1.4.1.1 Pure metal-based -- 1.4.1.2 Metal oxide-based -- 1.4.1.3 Carbide-based -- 1.4.1.4 Nitride-based -- 1.4.1.5 Ferrite-based -- 1.4.1.6 Sulfide-based -- 1.4.1.7 Polymetallic compound-based -- 1.4.1.8 Carbon-based -- 1.4.1.9 Polymer-based -- 1.4.2 Based on composition of nanomaterial -- 1.4.2.1 Conventional or mononanofluids -- 1.4.2.2 Hybrid nanofluids -- 1.4.3 Based on type of base fluid -- 1.4.3.1 Water-based -- 1.4.3.2 Glycol-based -- 1.4.3.3 Oil-based (lubricating oil, vegetable oil, kerosene, and polyol ester oil) -- 1.4.3.4 Ionic liquid-based -- 1.4.3.5 Refrigerant-based -- 1.5 Commercial nanofluids -- References -- 2 Laboratory-scale synthesis and scale-up challenges -- 2.1 Introduction -- 2.2 Laboratory-scale synthesis methods for nanofluids -- 2.2.1 One-step method -- 2.2.1.1 Physical methods -- 2.2.1.2 Chemical methods -- 2.2.2 Two-step method -- 2.3 Performance evaluation systems and their reliability -- 2.3.1 Evaluation of thermal conductivity and viscosity of nanofluid and their comparison -- 2.3.1.1 Problem definition -- 2.3.2 Evaluation of heat transfer coefficient, pressure drop, and performance of nanofluid -- 2.3.2.1 Problem statement -- 2.4 Large-scale production of nanofluids -- 2.5 Scale-up challenges and cost estimations -- 2.6 Problems -- References -- 3 Stability of nanofluids -- 3.1 Importance and mechanism of stability of nanofluids -- 3.2 Theoretical aspects.
Beschreibung:Literaturangaben
Beschreibung:vii, 452 Seiten
Illustrationen, Diagramme
ISBN:9780128219553
978-0-12-821955-3