Advances of Heat Transfer in Porous Media / / edited by Moghtada Mobedi and Kamel Hooman.

This reprint is a collection of recent advanced studies in the field of heat and fluid flow in porous media. The pore size of the studied porous media in this reprint starts from a nanoscale, and the applications include the drying process of materials such as clay and lentil grain as well as the en...

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Place / Publishing House:[Place of publication not identified] : : MDPI - Multidisciplinary Digital Publishing Institute,, 2023.
Year of Publication:2023
Language:English
Physical Description:1 online resource (222 pages)
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spelling Advances of Heat Transfer in Porous Media / edited by Moghtada Mobedi and Kamel Hooman.
[Place of publication not identified] : MDPI - Multidisciplinary Digital Publishing Institute, 2023.
1 online resource (222 pages)
text txt rdacontent
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online resource cr rdacarrier
Description based on publisher supplied metadata and other sources.
This reprint is a collection of recent advanced studies in the field of heat and fluid flow in porous media. The pore size of the studied porous media in this reprint starts from a nanoscale, and the applications include the drying process of materials such as clay and lentil grain as well as the enhancement of heat transfer by using high thermal conductive porous media such as metal foams and stacked woven wire mesh. The use of a suitable porous structure for helium gas cooling under high heat flux conditions of a nuclear fusion divertor is an interesting application of porous structures for heat transfer enhancement, which is discussed in this reprint. A method for the trade-off thermo-hydrodynamic performance of a porous medium, which is an important issue for heat transfer enhancement, is also discussed. In the performed numerical studies, different methods such as finite volume method, lumped analysis and molecular dynamics are employed. Heat and mass transfer in structural ceramic blocks is analyzed by an analytical and phenomenological approach. All chapters of this reprint are advanced studies including wide application areas of porous media as well as interesting computational models that are useful for the researchers in the field of "Heat Transfer in Porous Media".
Heat-transfer media.
Mechanical engineering.
3-0365-6711-9
Hooman, Kamel, editor.
Mobedi, Moghtada, editor.
language English
format eBook
author2 Hooman, Kamel,
Mobedi, Moghtada,
author_facet Hooman, Kamel,
Mobedi, Moghtada,
author2_variant k h kh
m m mm
author2_role TeilnehmendeR
TeilnehmendeR
title Advances of Heat Transfer in Porous Media /
spellingShingle Advances of Heat Transfer in Porous Media /
title_full Advances of Heat Transfer in Porous Media / edited by Moghtada Mobedi and Kamel Hooman.
title_fullStr Advances of Heat Transfer in Porous Media / edited by Moghtada Mobedi and Kamel Hooman.
title_full_unstemmed Advances of Heat Transfer in Porous Media / edited by Moghtada Mobedi and Kamel Hooman.
title_auth Advances of Heat Transfer in Porous Media /
title_new Advances of Heat Transfer in Porous Media /
title_sort advances of heat transfer in porous media /
publisher MDPI - Multidisciplinary Digital Publishing Institute,
publishDate 2023
physical 1 online resource (222 pages)
isbn 3-0365-6711-9
callnumber-first T - Technology
callnumber-subject TJ - Mechanical Engineering and Machinery
callnumber-label TJ260
callnumber-sort TJ 3260 A383 42023
illustrated Not Illustrated
dewey-hundreds 600 - Technology
dewey-tens 620 - Engineering
dewey-ones 621 - Applied physics
dewey-full 621.4022
dewey-sort 3621.4022
dewey-raw 621.4022
dewey-search 621.4022
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is_hierarchy_title Advances of Heat Transfer in Porous Media /
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