Similarity Solutions for the Boundary Layer Flow and Heat Transfer of Viscous Fluids, Nanofluids, Porous Media, and Micropolar Fluids /
Similarity Solutions for the Boundary Layer Flow and Heat Transfer of Viscous Fluids, Nanofluids, Porous Media, and Micropolar Fluids presents new similarity solutions for fluid mechanics problems, including heat transfer of viscous fluids, boundary layer flow, flow in porous media, and nanofluids d...
Main Authors: | , , , , |
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Format: | software, multimedia |
Language: | eng |
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London : Academic Press,
2021
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Subjects: | |
Online Access: | https://www.sciencedirect.com/science/book/9780128211885 |
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author | Merkin, John H., author 650972 Pop, Ioan, 1937-, author 630933 Lok, Yian Yian, author 233418 Grosan, Teodor, author 650973 ScienceDirect (Online service) 7722 |
author_facet | Merkin, John H., author 650972 Pop, Ioan, 1937-, author 630933 Lok, Yian Yian, author 233418 Grosan, Teodor, author 650973 ScienceDirect (Online service) 7722 |
author_sort | Merkin, John H., author 650972 |
collection | OCEAN |
description | Similarity Solutions for the Boundary Layer Flow and Heat Transfer of Viscous Fluids, Nanofluids, Porous Media, and Micropolar Fluids presents new similarity solutions for fluid mechanics problems, including heat transfer of viscous fluids, boundary layer flow, flow in porous media, and nanofluids due to continuous moving surfaces. After discussing several examples of these problems, similarity solutions are derived and solved using the latest proven methods, including bvp4c from MATLAB, the Keller-box method, singularity methods, and more. Numerical solutions and asymptotic results for limiting cases are also discussed in detail to investigate how flow develops at the leading edge and its end behavior. |
first_indexed | 2024-03-05T17:18:04Z |
format | software, multimedia |
id | KOHA-OAI-TEST:605723 |
institution | Universiti Teknologi Malaysia - OCEAN |
language | eng |
last_indexed | 2024-03-05T17:18:04Z |
publishDate | 2021 |
publisher | London : Academic Press, |
record_format | dspace |
spelling | KOHA-OAI-TEST:6057232023-09-25T04:21:24ZSimilarity Solutions for the Boundary Layer Flow and Heat Transfer of Viscous Fluids, Nanofluids, Porous Media, and Micropolar Fluids / Merkin, John H., author 650972 Pop, Ioan, 1937-, author 630933 Lok, Yian Yian, author 233418 Grosan, Teodor, author 650973 ScienceDirect (Online service) 7722 software, multimedia Electronic books 631902 London : Academic Press,©20222021engSimilarity Solutions for the Boundary Layer Flow and Heat Transfer of Viscous Fluids, Nanofluids, Porous Media, and Micropolar Fluids presents new similarity solutions for fluid mechanics problems, including heat transfer of viscous fluids, boundary layer flow, flow in porous media, and nanofluids due to continuous moving surfaces. After discussing several examples of these problems, similarity solutions are derived and solved using the latest proven methods, including bvp4c from MATLAB, the Keller-box method, singularity methods, and more. Numerical solutions and asymptotic results for limiting cases are also discussed in detail to investigate how flow develops at the leading edge and its end behavior.Includes bibliographical references and indexChapter 1. Basic equations and mathematical methods -- Chapter 2. Viscous fluids -- Chapter 3. Stretching/shrinking sheets near a stagnation-point flow in viscous fluids -- Chapter 4. Nanofluids -- Chapter 5. Stretching/shrinking sheets in nanofluids and hybrid nanofluids -- Chapter 6. Mixed convection flow in porous medium -- Chapter 7. Convective flows with internal heat generation in porous media -- Chapter 8. Micropolar fluids over the moving surface -- Chapter 9. Jets.Similarity Solutions for the Boundary Layer Flow and Heat Transfer of Viscous Fluids, Nanofluids, Porous Media, and Micropolar Fluids presents new similarity solutions for fluid mechanics problems, including heat transfer of viscous fluids, boundary layer flow, flow in porous media, and nanofluids due to continuous moving surfaces. After discussing several examples of these problems, similarity solutions are derived and solved using the latest proven methods, including bvp4c from MATLAB, the Keller-box method, singularity methods, and more. Numerical solutions and asymptotic results for limiting cases are also discussed in detail to investigate how flow develops at the leading edge and its end behavior.Fluid mechanicshttps://www.sciencedirect.com/science/book/9780128211885URN:ISBN:9780128211885Remote access restricted to users with a valid UTM ID via VPN. |
spellingShingle | Fluid mechanics Merkin, John H., author 650972 Pop, Ioan, 1937-, author 630933 Lok, Yian Yian, author 233418 Grosan, Teodor, author 650973 ScienceDirect (Online service) 7722 Similarity Solutions for the Boundary Layer Flow and Heat Transfer of Viscous Fluids, Nanofluids, Porous Media, and Micropolar Fluids / |
title | Similarity Solutions for the Boundary Layer Flow and Heat Transfer of Viscous Fluids, Nanofluids, Porous Media, and Micropolar Fluids / |
title_full | Similarity Solutions for the Boundary Layer Flow and Heat Transfer of Viscous Fluids, Nanofluids, Porous Media, and Micropolar Fluids / |
title_fullStr | Similarity Solutions for the Boundary Layer Flow and Heat Transfer of Viscous Fluids, Nanofluids, Porous Media, and Micropolar Fluids / |
title_full_unstemmed | Similarity Solutions for the Boundary Layer Flow and Heat Transfer of Viscous Fluids, Nanofluids, Porous Media, and Micropolar Fluids / |
title_short | Similarity Solutions for the Boundary Layer Flow and Heat Transfer of Viscous Fluids, Nanofluids, Porous Media, and Micropolar Fluids / |
title_sort | similarity solutions for the boundary layer flow and heat transfer of viscous fluids nanofluids porous media and micropolar fluids |
topic | Fluid mechanics |
url | https://www.sciencedirect.com/science/book/9780128211885 |
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