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"Heat and Mass Transfer: Advances in Modelling and Experimental Study for Industrial Applications" ed. by Yong Ren

Posted By: exLib
"Heat and Mass Transfer: Advances in Modelling and Experimental Study for Industrial Applications" ed. by Yong Ren

"Heat and Mass Transfer: Advances in Modelling and Experimental Study for Industrial Applications" ed. by Yong Ren
ITexLi | 2018 | ISBN: 1789237734 9781789237733 1789237726 9781789237726 1838816208 9781838816209 | 143 pages | PDF | 15 MB

The book aims to provide new insights to understand the heat and mass transfer phenomena, serving as a platform for exchanging inspiring ideas and boosting further development of these disciplines. This book focuses on the latest advances in applying fundamental heat and mass transfer theory and novel technologies for addressing a wide range of industrial problems of interest.

Heat and mass transfer are ubiquitous transport phenomena in many fields, from the natural environment and living organisms to the engineering process. This book will present readers with a recent analytical study, CFD modelling, and experimental investigations of heat and mass transfer topics associated with a variety of engineering disciplines including multiphase flow, nanofluids, porous media, battery thermal management, and engineering processes such as extractive distillation and arc welding.


Contents
1.Modeling and Analysis of Molten Pool Behavior for Submerged Arc Welding Process with Single and Multi-Wire Electrodes
2.Direct Numerical Simulation of Hydrate Dissociation in Homogeneous Porous Media by Applying CFD Method: One Example of CO2 Hydrate
3.Darcy-Forchheimer Flow of Casson Nanofluid with Heat Source/Sink: A Three-Dimensional Study
4.Modelling of Bubbly Flow in Bubble Column Reactors with an Improved Breakup Kernel Accounting for Bubble Shape Variations
5.Discussions of Effects of Surface Tension on Water Vapor Absorbed by Triethylene Glycol Solution Films
6.Mass Transfer in Extractive Distillation when Using Ionic Liquids as Solvents
7.Effectiveness of a Helix Tube to Water Cool a Battery Module

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