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Direct Numerical Simulation of Turbulent Flow in a Circular Pipe Subjected to Radial System Rotation

Flow Turbulence and Combustion · Kasım 2019

Özet
Direct numerical simulations have been performed with a high-order spectral element method computer code to investigate the Coriolis force effect on a fully-developed turbulent flow confined within a circular pipe subjected to radial system rotations. In order to study the radially rotating effects on the flow, a wide range of rotation numbers (Roτ) have been tested. In response to the system rotation imposed, large-scale secondary flows appear as streamwise counter-rotating vortices, which highly interact with the boundary layer and have a significant impact on the turbulent flow structures and dynamics. A quasi Taylor-Proudman region occurs at low rotation numbers, where the mean axial velocity is invariant along the rotating axis. As the rotation number increases, laminarization occurs near the bottom wall of the pipe, and the flow becomes fully laminarized when the rotation number approaches Roτ = 1.0. The characteristics of the flow field are investigated in both physical and spectral spaces, which include the analyses of the first- and second-order statistical moments, pre-multiplied spectra of velocity fluctuations, budget balance of the transport equation of Reynolds stresses, and coherent flow structures.
16 atıf Kasım 2019 DOI

Makale Bilgileri

Toplam Atıf 16 atıf · Scopus
ISSN13866184
Yayın TarihiKasım 2019
Cilt / Sayfa103 · 1057-1079

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Bu makaleye, sistemimizdeki Scopus veritabanında bulunan 0 makale atıf yapmıştır. Scopus genel atıf sayısı: 16.

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Scimago Dergi (ISSN Eşleşmesi)
Flow, Turbulence and Combustion
Q2
SJR Skoru0,576
H-Index81
ÜlkeNetherlands
Chemical Engineering (miscellaneous) (Q2)
Physical and Theoretical Chemistry (Q2)
Physics and Astronomy (miscellaneous) (Q2)
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16
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