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mixed convection heat transfer enhancement in a vented cavity filled with a nanofluid
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نویسنده
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bahlaoui ahmed ,raji a. ,hasnaoui mohammed ,naïmi m.
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منبع
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journal of applied fluid mechanics - 2016 - دوره : 9 - شماره : 2 - صفحه:593 -604
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چکیده
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In this paper, a numerical investigation is carried out on mixed convection in a vertical vented rectangularenclosure filled with al2o3-water nanofluid. the mixed convection effect is attained by heating the right wallby a constant hot temperature and cooling the cavity by an injected or sucked imposed flow. the effects ofsome pertinent parameters such as the reynolds number, 100≤ re ≤ 5000, the solid volume fraction of the nanoparticles, 0 ≤ ф ≤0.1, and the aspect ratio of the cavity, 1 ≤ a ≤ 4, on flow and temperature patterns as well as on the heat transfer rate within the enclosure are presented for the two ventilation modes. for a value of the aspect ratio a = 2, the obtained results demonstrate that the increase of volume fraction ofnanoparticles contributes to an enhancement of the heat transfer and to an increase of the mean temperature within the cavity. also, it was revealed that the fluid suction mode yields the best heat transfer performance. in the case when a is varied from 1 to 4, it was obtained that the heat transfer enhancement, using nanofluids, is more pronounced at shallow enclosures than at tall ones.
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کلیدواژه
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mixed convection ,nanofluid ,suction ,injection ,vented cavity ,numerical study.
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آدرس
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sultan moulay slimane university, polydisciplinary faculty, physics department, interdisciplinarylaboratory of research in sciences and technologies (lirst), morocco, sultan moulay slimane university, faculty of sciences and technologies, physics department, laboratoryof flows and transfers modelling (lamet), morocco, cadi ayyad university, faculty of sciences semlalia, physics department, laboratory of fluid mechanicsand energetics (lmfe), unit associated to cnrst (urac 27), morocco, sultan moulay slimane university, faculty of sciences and technologies, physics department, laboratoryof flows and transfers modelling (lamet), morocco
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پست الکترونیکی
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naimi@fstbm.ac.ma
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Authors
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