Thermal Buoyancy Effects in Rotating Non-Isothermal Flows

The present paper is concerned with the non-isothermal flow mechanisms in rotating systems with emphasis on the rotation-induced thermal buoyancy effects stemming from the coexistence of rotational body forces and the nonuniformity of the fluid temperature field. Non-isothermal flow in rotating duct...

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Main Author: C. Y. Soong
Format: Article
Language:English
Published: Wiley 2001-01-01
Series:International Journal of Rotating Machinery
Subjects:
Online Access:http://dx.doi.org/10.1155/S1023621X01000380
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author C. Y. Soong
author_facet C. Y. Soong
author_sort C. Y. Soong
collection DOAJ
description The present paper is concerned with the non-isothermal flow mechanisms in rotating systems with emphasis on the rotation-induced thermal buoyancy effects stemming from the coexistence of rotational body forces and the nonuniformity of the fluid temperature field. Non-isothermal flow in rotating ducts of radial and parallel modes and rotating cylindrical configurations, including rotating cylinders and disk systems, are considered. Previous investigations closely related to the rotational buoyancy are surveyed. The mechanisms of the rotation-induced buoyancy are manifested by the author's recent theoretical results and scaling analyses pertaining to the rotation-induced buoyancy in rotating ducts and two-disk systems. Finally, the open issues for future researches in this area are proposed.
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spelling doaj-art-f46988772dab4f55a0e7634eabe802212025-02-03T01:31:08ZengWileyInternational Journal of Rotating Machinery1023-621X2001-01-017643544610.1155/S1023621X01000380Thermal Buoyancy Effects in Rotating Non-Isothermal FlowsC. Y. Soong0Department of Aeronautical Engineering, Feng Chia University, TaiwanThe present paper is concerned with the non-isothermal flow mechanisms in rotating systems with emphasis on the rotation-induced thermal buoyancy effects stemming from the coexistence of rotational body forces and the nonuniformity of the fluid temperature field. Non-isothermal flow in rotating ducts of radial and parallel modes and rotating cylindrical configurations, including rotating cylinders and disk systems, are considered. Previous investigations closely related to the rotational buoyancy are surveyed. The mechanisms of the rotation-induced buoyancy are manifested by the author's recent theoretical results and scaling analyses pertaining to the rotation-induced buoyancy in rotating ducts and two-disk systems. Finally, the open issues for future researches in this area are proposed.http://dx.doi.org/10.1155/S1023621X01000380Non-isothermal flowRotation-induced buoyancyScaling analysisRotating ductsRotating cylindersRotating disks.
spellingShingle C. Y. Soong
Thermal Buoyancy Effects in Rotating Non-Isothermal Flows
International Journal of Rotating Machinery
Non-isothermal flow
Rotation-induced buoyancy
Scaling analysis
Rotating ducts
Rotating cylinders
Rotating disks.
title Thermal Buoyancy Effects in Rotating Non-Isothermal Flows
title_full Thermal Buoyancy Effects in Rotating Non-Isothermal Flows
title_fullStr Thermal Buoyancy Effects in Rotating Non-Isothermal Flows
title_full_unstemmed Thermal Buoyancy Effects in Rotating Non-Isothermal Flows
title_short Thermal Buoyancy Effects in Rotating Non-Isothermal Flows
title_sort thermal buoyancy effects in rotating non isothermal flows
topic Non-isothermal flow
Rotation-induced buoyancy
Scaling analysis
Rotating ducts
Rotating cylinders
Rotating disks.
url http://dx.doi.org/10.1155/S1023621X01000380
work_keys_str_mv AT cysoong thermalbuoyancyeffectsinrotatingnonisothermalflows