Computational Heat Transfer and Fluid Mechanics

With the advances in high-speed computer technology, complex heat transfer and fluid flow problems can be solved computationally with high accuracy. Computational modeling techniques have found a wide range of applications in diverse fields of mechanical, aerospace, energy, environmental engineering...

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Other Authors: Talebizadeh Sardari, Pouyan (Editor), Ahmadi, Goodarz (Editor), Inthavong, Kiao (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel MDPI - Multidisciplinary Digital Publishing Institute 2022
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DOAB: description of the publication
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700 1 |a Inthavong, Kiao  |4 edt 
700 1 |a Talebizadeh Sardari, Pouyan  |4 oth 
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700 1 |a Inthavong, Kiao  |4 oth 
245 1 0 |a Computational Heat Transfer and Fluid Mechanics 
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520 |a With the advances in high-speed computer technology, complex heat transfer and fluid flow problems can be solved computationally with high accuracy. Computational modeling techniques have found a wide range of applications in diverse fields of mechanical, aerospace, energy, environmental engineering, as well as numerous industrial systems. Computational modeling has also been used extensively for performance optimization of a variety of engineering designs. The purpose of this book is to present recent advances, as well as up-to-date progress in all areas of innovative computational heat transfer and fluid mechanics, including both fundamental and practical applications. The scope of the present book includes single and multiphase flows, laminar and turbulent flows, heat and mass transfer, energy storage, heat exchangers, respiratory flows and heat transfer, biomedical applications, porous media, and optimization. In addition, this book provides guidelines for engineers and researchers in computational modeling and simulations in fluid mechanics and heat transfer. 
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650 7 |a Technology: general issues  |2 bicssc 
650 7 |a History of engineering & technology  |2 bicssc 
653 |a auxiliary feedwater system 
653 |a cavitation 
653 |a computational fluid dynamics 
653 |a in-service testing 
653 |a multiphase flow 
653 |a multi-stage orifice 
653 |a nonuniform metal foam 
653 |a melting heat transfer 
653 |a thermal energy storage 
653 |a conical swirl atomizer 
653 |a atomization 
653 |a CFD 
653 |a Eulerian model 
653 |a heat transfer coefficient 
653 |a micro-fins 
653 |a friction factor 
653 |a numerical methods 
653 |a micro- and macro-parameters of the atomized liquid 
653 |a mechanism of effervescent-swirl atomization 
653 |a efficiency of atomization process 
653 |a effervescent-swirl atomizer 
653 |a fixed-bed reactor 
653 |a wall structures 
653 |a complex particle shapes 
653 |a process intensification 
653 |a heat transfer 
653 |a photovoltaic cell efficiency 
653 |a thermal regulation 
653 |a energy and light harvesting 
653 |a irreversibility losses 
653 |a quantum dynamics 
653 |a nature-inspired mimicking 
653 |a heat transfer enhancement 
653 |a radiation insert 
653 |a numerical simulations 
653 |a performance evaluation criteria 
653 |a thermal efficiency 
653 |a particle sedimentation 
653 |a resistance force 
653 |a fractional-order integro-differential equation 
653 |a laplace transform 
653 |a Mittag-Leffler function 
653 |a block-pulse operational matrix 
653 |a Nu number 
653 |a microchannel heat sink 
653 |a trefoil ribs 
653 |a thermal enhancement 
653 |a thermal resistance 
653 |a triple-tube heat exchanger 
653 |a twisted fin array 
653 |a phase change material 
653 |a solidification 
653 |a nanofluids advantages and disadvantages 
653 |a thermal hydraulic performance 
653 |a vortex generators 
653 |a micro-channel 
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