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Journal Articles
Accepted Manuscript
Article Type: Technical Briefs
J. Fluids Eng.
Paper No: FE-19-1169
Published Online: September 1, 2019
Journal Articles
Accepted Manuscript
Article Type: Research-Article
J. Fluids Eng.
Paper No: FE-19-1138
Published Online: September 1, 2019
Journal Articles
Accepted Manuscript
Article Type: Research-Article
J. Fluids Eng.
Paper No: FE-18-1803
Published Online: September 1, 2019
Journal Articles
Accepted Manuscript
Article Type: Research-Article
J. Fluids Eng.
Paper No: FE-18-1418
Published Online: September 1, 2019
Journal Articles
Accepted Manuscript
Article Type: Research-Article
J. Fluids Eng.
Paper No: FE-19-1329
Published Online: September 1, 2019
Journal Articles
Accepted Manuscript
Article Type: Research-Article
J. Fluids Eng.
Paper No: FE-19-1304
Published Online: September 1, 2019
Journal Articles
Accepted Manuscript
Article Type: Research-Article
J. Fluids Eng.
Paper No: FE-19-1469
Published Online: September 1, 2019
Journal Articles
Accepted Manuscript
Article Type: Research-Article
J. Fluids Eng.
Paper No: FE-19-1121
Published Online: September 1, 2019
Journal Articles
Accepted Manuscript
Article Type: Research-Article
J. Fluids Eng.
Paper No: FE-19-1048
Published Online: September 1, 2019
Journal Articles
Accepted Manuscript
Article Type: Research-Article
J. Fluids Eng.
Paper No: FE-19-1096
Published Online: September 1, 2019
Journal Articles
Accepted Manuscript
Article Type: Research-Article
J. Fluids Eng.
Paper No: FE-19-1312
Published Online: August 2, 2019
Journal Articles
Accepted Manuscript
Article Type: Research-Article
J. Fluids Eng.
Paper No: FE-19-1196
Published Online: August 2, 2019
Journal Articles
Accepted Manuscript
Article Type: Research-Article
J. Fluids Eng.
Paper No: FE-18-1758
Published Online: August 2, 2019
Image
The schematic of the experimental setup: ( a ) A photo of the setup in the ...
Published Online: August 1, 2019
Fig. 1 The schematic of the experimental setup: ( a ) A photo of the setup in the water flume, ( b ) three-dimensional sketch, and ( c ) vertical view More
Image
Instantaneous vorticity contours for two side-by-side cylinders at differen...
Published Online: August 1, 2019
Fig. 2 Instantaneous vorticity contours for two side-by-side cylinders at different inclination angles: ( a ) α  = 0 deg, ( b ) α  = 15 deg, ( c ) α  = 30 deg, ( d ) α  = 45 deg, and ( e ) α  = 60 deg More
Image
Instantaneous vorticity contours for three side-by-side cylinders at differ...
Published Online: August 1, 2019
Fig. 3 Instantaneous vorticity contours for three side-by-side cylinders at different inclination angles: ( a ) α  = 0 deg, ( b ) α  = 15 deg, ( c ) α  = 30 deg, ( d ) α  = 45 deg, and ( e ) α  = 60 deg More
Image
The schematic diagram for the definition of the deflection angle  β : ( a )...
Published Online: August 1, 2019
Fig. 4 The schematic diagram for the definition of the deflection angle β : ( a ) two cylinders and ( b ) three cylinders More
Image
Time histories (left column) and probability density distributions (right c...
Published Online: August 1, 2019
Fig. 5 Time histories (left column) and probability density distributions (right column) of the deflection angle at different inclination angles (two-cylinder case) More
Image
Time histories (left column) and probability density distributions (right c...
Published Online: August 1, 2019
Fig. 6 Time histories (left column) and probability density distributions (right column) of the deflection angle at different inclination angles (three-cylinder cases, top gap) More
Image
Time histories (left column) and probability density distributions (right c...
Published Online: August 1, 2019
Fig. 7 Time histories (left column) and probability density distributions (right column) of the deflection angle at different inclination angles (three-cylinder case, bottom gap) More