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A Study Of Dean Vortex Development And Structure In A Curved Rectangular Channel With Aspect Ratio Of 40 At Dean Numbers Up To 430 by Philip M. Ligrani
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1NASA Technical Reports Server (NTRS) 19950005258: A Study Of Dean Vortex Development And Structure In A Curved Rectangular Channel With Aspect Ratio Of 40 At Dean Numbers Up To 430
By NASA Technical Reports Server (NTRS)
Flow in a curved channel with mild curvature, an aspect ratio of 40 to 1, and an inner to outer radius ratio of 0.979 is studied at Dean numbers De ranging from 35 to 430. For positions from the start of curvature ranging from 85 to 145 degrees, the sequence of transition events begins with curved channel Poiseuille flow at De less than 40-64. As the Dean number increases, observations show initial development of Dean vortex pairs, followed by symmetric vortex pairs which, when viewed in spanwise/radial planes, cover the entire channel height (De=90-100). At De from 40 to 125-130, the vortex pairs often develop intermittent waviness in the form of vortex undulations. Splitting and merging of vortex pairs is also observed over the same experimental conditions as well as at higher De. When Dean numbers range from 130 to 185-200, the undulating wavy mode is replaced by a twisting mode with higher amplitudes of oscillation and shorter wavelengths. The twisting wavy mode results in the development of regions where turbulence intensity is locally augmented at Dean numbers from 150 to 185-200, principally in the upwash regions between the two individual vortices which make up each vortex pair. These turbulent regions eventually increase in intensity and spatial extent as the Dean number increases further, until individual regions merge together so that the entire cross section of the channel contains chaotic turbulent motions. When Dean numbers then reach 400-435, spectra of velocity fluctuations then evidence fully turbulent flow.
“NASA Technical Reports Server (NTRS) 19950005258: A Study Of Dean Vortex Development And Structure In A Curved Rectangular Channel With Aspect Ratio Of 40 At Dean Numbers Up To 430” Metadata:
- Title: ➤ NASA Technical Reports Server (NTRS) 19950005258: A Study Of Dean Vortex Development And Structure In A Curved Rectangular Channel With Aspect Ratio Of 40 At Dean Numbers Up To 430
- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
“NASA Technical Reports Server (NTRS) 19950005258: A Study Of Dean Vortex Development And Structure In A Curved Rectangular Channel With Aspect Ratio Of 40 At Dean Numbers Up To 430” Subjects and Themes:
- Subjects: ➤ NASA Technical Reports Server (NTRS) - CHANNEL FLOW - FLOW DISTRIBUTION - FLOW VISUALIZATION - VORTICES - VORTICITY - WIND TUNNEL TESTS - ASPECT RATIO - LAMINAR FLOW - OSCILLATING FLOW - TURBULENCE - TURBULENT FLOW - Ligrani, Phillip M.
Edition Identifiers:
- Internet Archive ID: NASA_NTRS_Archive_19950005258
Downloads Information:
The book is available for download in "texts" format, the size of the file-s is: 198.90 Mbs, the file-s for this book were downloaded 60 times, the file-s went public at Sat Oct 08 2016.
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2DTIC ADA286159: A Study Of Dean Vortex Development And Structure In A Curved Rectangular Channel With Aspect Ratio Of 40 At Dean Numbers Up To 430
By Defense Technical Information Center
Flow in a curved channel with mild curvature, an aspect ratio of 40 to 1, and an inner to outer radius ratio of 0.979 is studied at Dean numbers De ranging from 35 to 430. For positions from the start of curvature ranging from 85 to 145 degrees, the sequence of transition events begins with curved channel Poiseuille flow at De 40-64. As the Dean number increases, observations show initial development of Dean vortex pairs, followed by symmetric vortex pairs which, when viewed in spanwise/radial planes, cover the entire channel height (De=90-100). At De from 40 to 125-130, the vortex pairs often develop intermittent waviness in the form of vortex undulations. Splitting and merging of vortex pairs is also observed over the same experimental conditions as well as at higher De. When Dean numbers range from 130 to 185-200, the undulating wavy mode is replaced by a twisting mode with higher amplitudes of oscillation and shorter wavelengths. The twisting wavy mode results in the development of regions where turbulence intensity is locally augmented at Dean numbers from 150 to 185-200, principally in the upwash regions between the two individual vortices which make up each vortex pair. These turbulent regions eventually increase in intensity and spatial extent as the Dean number increases further, until individual regions merge together so that the entire cross section of the channel contains chaotic turbulent motions. When Dean numbers then reach 400-435, spectra of velocity fluctuations then evidence fully turbulent flow. Curved channel, Concave and convex curvature, Dean vortex pairs, Twisting and undulating vortices.
“DTIC ADA286159: A Study Of Dean Vortex Development And Structure In A Curved Rectangular Channel With Aspect Ratio Of 40 At Dean Numbers Up To 430” Metadata:
- Title: ➤ DTIC ADA286159: A Study Of Dean Vortex Development And Structure In A Curved Rectangular Channel With Aspect Ratio Of 40 At Dean Numbers Up To 430
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA286159: A Study Of Dean Vortex Development And Structure In A Curved Rectangular Channel With Aspect Ratio Of 40 At Dean Numbers Up To 430” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Ligrani, Phillip M - NAVAL POSTGRADUATE SCHOOL MONTEREY CA DEPT OF MECHANICAL ENGINEERING - *CURVATURE - *CHANNEL FLOW - *ASPECT RATIO - VELOCITY - RATIOS - ARMY RESEARCH - OBSERVATION - INTENSITY - MOTION - TURBULENCE - TRANSITIONS - POISEUILLE FLOW - CHANNELS - HEIGHT - OSCILLATION - AMPLITUDE - SPLITTING - FLOW - CROSS SECTIONS - TURBULENT FLOW - VORTICES - FLOW VISUALIZATION - REGIONS - SEQUENCES - SPECTRA
Edition Identifiers:
- Internet Archive ID: DTIC_ADA286159
Downloads Information:
The book is available for download in "texts" format, the size of the file-s is: 116.37 Mbs, the file-s for this book were downloaded 74 times, the file-s went public at Tue Mar 20 2018.
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