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Review of fluid flow and convective heat transfer within rotating disk cavities with impinging jet

Authors :
Harmand, Souad
Pellé, Julien
Poncet, Sébastien
Shevchuk, Igor V.
Source :
International Journal of Thermal Sciences 67 (2013) 1-30
Publication Year :
2013

Abstract

Fluid flow and convective heat transfer in rotor-stator configurations, which are of great importance in different engineering applications, are treated in details in this review. The review focuses on convective heat transfer in predominantly outward air flow in the rotor-stator geometries with and without impinging jets and incorporates two main parts, namely, experimental/theoretical methodologies and geometries/results. Experimental methodologies include naphthalene sublimation techniques, steady state (thin layer) and transient (thermochromic liquid crystals) thermal measurements, thermocouples and infra-red cameras, hot-wire anemometry, laser Doppler and particle image velocimetry, laser plane and smoke generator. Theoretical approaches incorporate modern CFD computational tools (DNS, LES, RANS etc). Geometries and results part being mentioned starting from simple to complex elucidates cases of a free rotating disk, a single disk in the crossflow, single jets impinging onto stationary and rotating disk, rotor-stator systems without and with impinging single jets, as well as multiple jets. Conclusions to the review outline perspectives of the further extension of the investigations of different kinds of the rotor-stator systems and their applications in engineering practice.

Subjects

Subjects :
Physics - Fluid Dynamics

Details

Database :
arXiv
Journal :
International Journal of Thermal Sciences 67 (2013) 1-30
Publication Type :
Report
Accession number :
edsarx.1305.2882
Document Type :
Working Paper
Full Text :
https://doi.org/10.1016/j.ijthermalsci.2012.11.009