Nanofluid Flow in Porous Media

Studies of fluid flow and heat transfer in a porous medium have been the subject of continuous interest for the past several decades because of the wide range of applications, such as geothermal systems, drying technologies, production of thermal isolators, control of pollutant spread in groundwater...

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Aineistotyyppi: Online
Kieli:englanti
Julkaistu: IntechOpen 2021
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Linkit:ONIX_20210420_9781789238389_2993
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collection Directory of Open Access Books
description Studies of fluid flow and heat transfer in a porous medium have been the subject of continuous interest for the past several decades because of the wide range of applications, such as geothermal systems, drying technologies, production of thermal isolators, control of pollutant spread in groundwater, insulation of buildings, solar power collectors, design of nuclear reactors, and compact heat exchangers, etc. There are several models for simulating porous media such as the Darcy model, Non-Darcy model, and non-equilibrium model. In porous media applications, such as the environmental impact of buried nuclear heat-generating waste, chemical reactors, thermal energy transport/storage systems, the cooling of electronic devices, etc., a temperature discrepancy between the solid matrix and the saturating fluid has been observed and recognized.
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publishDateRange 2021
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spelling doab-20.500.12854ir-676332024-04-04T19:19:19Z Nanofluid Flow in Porous Media Sheikholeslami Kandelousi, Mohsen Ameen, Sadia Shaheer Akhtar, M. Shin, Hyung-Shik Fluid mechanics bic Book Industry Communication::P Mathematics & science::PH Physics::PHD Classical mechanics::PHDF Fluid mechanics thema EDItEUR::P Mathematics and Science::PH Physics::PHD Classical mechanics::PHDF Physics: Fluid mechanics Studies of fluid flow and heat transfer in a porous medium have been the subject of continuous interest for the past several decades because of the wide range of applications, such as geothermal systems, drying technologies, production of thermal isolators, control of pollutant spread in groundwater, insulation of buildings, solar power collectors, design of nuclear reactors, and compact heat exchangers, etc. There are several models for simulating porous media such as the Darcy model, Non-Darcy model, and non-equilibrium model. In porous media applications, such as the environmental impact of buried nuclear heat-generating waste, chemical reactors, thermal energy transport/storage systems, the cooling of electronic devices, etc., a temperature discrepancy between the solid matrix and the saturating fluid has been observed and recognized. 2021-04-20T16:20:24Z 2021-04-20T16:20:24Z 2020 book ONIX_20210420_9781789238389_2993 9781789238389 9781789238372 9781839683428 https://directory.doabooks.org/handle/20.500.12854/67633 eng image/jpeg n/a https://www.intechopen.com/books https://mts.intechopen.com/storage/books/7774/authors_book/authors_book.pdf IntechOpen IntechOpen 10.5772/intechopen.77588 10.5772/intechopen.77588 78a36484-2c0c-47cb-ad67-2b9f5cd4a8f6 9781789238389 9781789238372 9781839683428 IntechOpen 244 open access
spellingShingle Fluid mechanics
bic Book Industry Communication::P Mathematics & science::PH Physics::PHD Classical mechanics::PHDF Fluid mechanics
thema EDItEUR::P Mathematics and Science::PH Physics::PHD Classical mechanics::PHDF Physics: Fluid mechanics
Nanofluid Flow in Porous Media
title Nanofluid Flow in Porous Media
title_full Nanofluid Flow in Porous Media
title_fullStr Nanofluid Flow in Porous Media
title_full_unstemmed Nanofluid Flow in Porous Media
title_short Nanofluid Flow in Porous Media
title_sort nanofluid flow in porous media
topic Fluid mechanics
bic Book Industry Communication::P Mathematics & science::PH Physics::PHD Classical mechanics::PHDF Fluid mechanics
thema EDItEUR::P Mathematics and Science::PH Physics::PHD Classical mechanics::PHDF Physics: Fluid mechanics
topic_facet Fluid mechanics
bic Book Industry Communication::P Mathematics & science::PH Physics::PHD Classical mechanics::PHDF Fluid mechanics
thema EDItEUR::P Mathematics and Science::PH Physics::PHD Classical mechanics::PHDF Physics: Fluid mechanics
url ONIX_20210420_9781789238389_2993