COMPUTATIONAL FLUID FLOW AND HEAT TRANSFER : Advances, Design, Control, and Applications /
"The text provides insight into the different mathematical tools and techniques that can be applied to the analysis and numerical computations of flow models. It further discusses important topics such as the heat transfer effect on boundary layer flow, modeling of flows through porous media, a...
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Format: | software, multimedia |
Language: | eng |
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Boca Raton, FL : CRC Press,
2024
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Subjects: | |
Online Access: | http://repository.library.utm.my/7357 https://drive.google.com/file/d/1PPoVZMrJHZXwvrt3ylHcMdT_H4GI_XLw/view?usp=sharing |
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author | Awasthi, Mukesh Kumar, editor 654625 Kumar, Ashwani editor 234956 Dutt, Nitesh editor 649945 Singh, Satyvir editor 656047 |
author_facet | Awasthi, Mukesh Kumar, editor 654625 Kumar, Ashwani editor 234956 Dutt, Nitesh editor 649945 Singh, Satyvir editor 656047 |
author_sort | Awasthi, Mukesh Kumar, editor 654625 |
collection | OCEAN |
description | "The text provides insight into the different mathematical tools and techniques that can be applied to the analysis and numerical computations of flow models. It further discusses important topics such as the heat transfer effect on boundary layer flow, modeling of flows through porous media, anisotropic polytrophic gas model, and thermal instability in viscoelastic fluids. This book: o Discusses modeling of Rayleigh-Taylor instability in nanofluid layer and thermal instability in viscoelastic fluids. o Covers open FOAM simulation of free surface problems, and anisotropic polytrophic gas model. o Highlights the Sensitivity Analysis in Aerospace Engineering, MHD Flow of a Micropolar Hybrid Nanofluid, and IoT-Enabled Monitoring for Natural Convection. o Presents thermal behavior of nanofluid in complex geometries and heat transfer effect on Boundary layer flow. o Explains natural convection heat transfer in non-Newtonian fluids and homotropy series solution of the boundary layer flow. o Illustrates modeling of flows through porous media and investigates Shock-driven Richtmyer-Meshkov instability. It is primarily written for senior undergraduate, graduate students, and academic researchers in the fields of Applied Sciences, Mechanical Engineering, Manufacturing Engineering, Production Engineering, Industrial engineering, Automotive engineering, and Aerospace engineering"-- |
first_indexed | 2024-09-23T23:45:24Z |
format | software, multimedia |
id | KOHA-OAI-TEST:612027 |
institution | Universiti Teknologi Malaysia - OCEAN |
language | eng |
last_indexed | 2025-02-19T04:49:31Z |
publishDate | 2024 |
publisher | Boca Raton, FL : CRC Press, |
record_format | dspace |
spelling | KOHA-OAI-TEST:6120272025-01-31T03:13:11ZCOMPUTATIONAL FLUID FLOW AND HEAT TRANSFER : Advances, Design, Control, and Applications / Awasthi, Mukesh Kumar, editor 654625 Kumar, Ashwani editor 234956 Dutt, Nitesh editor 649945 Singh, Satyvir editor 656047 software, multimedia Electronic books 631902 Boca Raton, FL : CRC Press,2024eng"The text provides insight into the different mathematical tools and techniques that can be applied to the analysis and numerical computations of flow models. It further discusses important topics such as the heat transfer effect on boundary layer flow, modeling of flows through porous media, anisotropic polytrophic gas model, and thermal instability in viscoelastic fluids. This book: o Discusses modeling of Rayleigh-Taylor instability in nanofluid layer and thermal instability in viscoelastic fluids. o Covers open FOAM simulation of free surface problems, and anisotropic polytrophic gas model. o Highlights the Sensitivity Analysis in Aerospace Engineering, MHD Flow of a Micropolar Hybrid Nanofluid, and IoT-Enabled Monitoring for Natural Convection. o Presents thermal behavior of nanofluid in complex geometries and heat transfer effect on Boundary layer flow. o Explains natural convection heat transfer in non-Newtonian fluids and homotropy series solution of the boundary layer flow. o Illustrates modeling of flows through porous media and investigates Shock-driven Richtmyer-Meshkov instability. It is primarily written for senior undergraduate, graduate students, and academic researchers in the fields of Applied Sciences, Mechanical Engineering, Manufacturing Engineering, Production Engineering, Industrial engineering, Automotive engineering, and Aerospace engineering"--Includes bibliographical references and index.1. Introduction to Mathematical and Computational Methods. -- 2. IoT-Enabled Monitoring for Natural Convection Solar Dryers. -- 3. Natural Convection Study in Cylindrical Annulus through OpenFOAM. -- 4. MHD Forced Convection in Casson Hybrid Nanofluids with Soret and Dufour Effects. -- 5. Boundary Layer Flow in Aerospace Applications. -- 6. Sensitivity Analysis for Aerospace Engineering Applications. -- 7. Design Optimization and Sensitivity Analysis in Aerospace Engineering. -- 8. Modeling of Flows through Porous Media. -- 9. Numerical Analysis of Turbulent Flow in Tubes with Longitudinal Fin using Al2O3-Water Nano-Fluids. -- 10. Gravity-Modulated Thermal Instability in Oldroyd-B Nanofluids. -- 11. Thermal Instability in Hele-Shaw Cell with Variable Forces for Rivlin-Ericksen Nanofluid. -- 12. MHD Flow of a Micropolar Hybrid Nanofluid between Two Parallel Disks. -- 13. Modeling Rayleigh-Taylor Instability in Nanofluid Layers. -- 14. Shock Wave Effects on Hydrodynamic Instability in Elliptical Bubbles"The text provides insight into the different mathematical tools and techniques that can be applied to the analysis and numerical computations of flow models. It further discusses important topics such as the heat transfer effect on boundary layer flow, modeling of flows through porous media, anisotropic polytrophic gas model, and thermal instability in viscoelastic fluids. This book: o Discusses modeling of Rayleigh-Taylor instability in nanofluid layer and thermal instability in viscoelastic fluids. o Covers open FOAM simulation of free surface problems, and anisotropic polytrophic gas model. o Highlights the Sensitivity Analysis in Aerospace Engineering, MHD Flow of a Micropolar Hybrid Nanofluid, and IoT-Enabled Monitoring for Natural Convection. o Presents thermal behavior of nanofluid in complex geometries and heat transfer effect on Boundary layer flow. o Explains natural convection heat transfer in non-Newtonian fluids and homotropy series solution of the boundary layer flow. o Illustrates modeling of flows through porous media and investigates Shock-driven Richtmyer-Meshkov instability. It is primarily written for senior undergraduate, graduate students, and academic researchers in the fields of Applied Sciences, Mechanical Engineering, Manufacturing Engineering, Production Engineering, Industrial engineering, Automotive engineering, and Aerospace engineering"--HeatFluid mechanicshttp://repository.library.utm.my/7357https://drive.google.com/file/d/1PPoVZMrJHZXwvrt3ylHcMdT_H4GI_XLw/view?usp=sharingURN:ISBN:9781003465171 |
spellingShingle | Heat Fluid mechanics Awasthi, Mukesh Kumar, editor 654625 Kumar, Ashwani editor 234956 Dutt, Nitesh editor 649945 Singh, Satyvir editor 656047 COMPUTATIONAL FLUID FLOW AND HEAT TRANSFER : Advances, Design, Control, and Applications / |
title | COMPUTATIONAL FLUID FLOW AND HEAT TRANSFER : Advances, Design, Control, and Applications / |
title_full | COMPUTATIONAL FLUID FLOW AND HEAT TRANSFER : Advances, Design, Control, and Applications / |
title_fullStr | COMPUTATIONAL FLUID FLOW AND HEAT TRANSFER : Advances, Design, Control, and Applications / |
title_full_unstemmed | COMPUTATIONAL FLUID FLOW AND HEAT TRANSFER : Advances, Design, Control, and Applications / |
title_short | COMPUTATIONAL FLUID FLOW AND HEAT TRANSFER : Advances, Design, Control, and Applications / |
title_sort | computational fluid flow and heat transfer advances design control and applications |
topic | Heat Fluid mechanics |
url | http://repository.library.utm.my/7357 https://drive.google.com/file/d/1PPoVZMrJHZXwvrt3ylHcMdT_H4GI_XLw/view?usp=sharing |
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