Vibrational Heat Transfer Intensification in an Annulus with a Deformable Boundary

An experimental study is carried out on heat transfer in a horizontal liquid annulus at boundary oscillations. The inner boundary is formed by a copper rod that is heated using electric current. The outer boundary is made of an elastic silicone tube brought to oscillations by two electrodynamic vibr...

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Main Author: Nikolai Kozlov
Format: Article
Language:English
Published: Wiley 2019-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2019/9108795
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author Nikolai Kozlov
author_facet Nikolai Kozlov
author_sort Nikolai Kozlov
collection DOAJ
description An experimental study is carried out on heat transfer in a horizontal liquid annulus at boundary oscillations. The inner boundary is formed by a copper rod that is heated using electric current. The outer boundary is made of an elastic silicone tube brought to oscillations by two electrodynamic vibrators situated symmetrically on the opposite sides. In the absence of vibrations, a classic natural convection is observed. Vibrations excite steady time-average flows in the fluid. The steady flows make the gravity-induced flow structure transform, and the heat transfer is intensified. In the analysis, it is shown that the heat transfer in the studied system is determined by a competition between the natural convection and steady streaming. A domain of parameters is found where the latter dominates.
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institution Kabale University
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language English
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series Shock and Vibration
spelling doaj-art-5ce774413e3348ea88c4a8a5306b0e582025-02-03T05:55:19ZengWileyShock and Vibration1070-96221875-92032019-01-01201910.1155/2019/91087959108795Vibrational Heat Transfer Intensification in an Annulus with a Deformable BoundaryNikolai Kozlov0Hydrodynamic Stability Lab., Institute of Continuous Media Mechanics UrB RAS, PFRC UrB RAS, Perm, RussiaAn experimental study is carried out on heat transfer in a horizontal liquid annulus at boundary oscillations. The inner boundary is formed by a copper rod that is heated using electric current. The outer boundary is made of an elastic silicone tube brought to oscillations by two electrodynamic vibrators situated symmetrically on the opposite sides. In the absence of vibrations, a classic natural convection is observed. Vibrations excite steady time-average flows in the fluid. The steady flows make the gravity-induced flow structure transform, and the heat transfer is intensified. In the analysis, it is shown that the heat transfer in the studied system is determined by a competition between the natural convection and steady streaming. A domain of parameters is found where the latter dominates.http://dx.doi.org/10.1155/2019/9108795
spellingShingle Nikolai Kozlov
Vibrational Heat Transfer Intensification in an Annulus with a Deformable Boundary
Shock and Vibration
title Vibrational Heat Transfer Intensification in an Annulus with a Deformable Boundary
title_full Vibrational Heat Transfer Intensification in an Annulus with a Deformable Boundary
title_fullStr Vibrational Heat Transfer Intensification in an Annulus with a Deformable Boundary
title_full_unstemmed Vibrational Heat Transfer Intensification in an Annulus with a Deformable Boundary
title_short Vibrational Heat Transfer Intensification in an Annulus with a Deformable Boundary
title_sort vibrational heat transfer intensification in an annulus with a deformable boundary
url http://dx.doi.org/10.1155/2019/9108795
work_keys_str_mv AT nikolaikozlov vibrationalheattransferintensificationinanannuluswithadeformableboundary