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Dive into the research topics where Banafsheh Seyed-Aghazadeh is active.

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Featured researches published by Banafsheh Seyed-Aghazadeh.


Physics of Fluids | 2015

An experimental investigation of vortex-induced vibration of a rotating circular cylinder in the crossflow direction

Banafsheh Seyed-Aghazadeh; Yahya Modarres-Sadeghi

Vortex-induced vibration of a flexibly-mounted circular cylinder free to oscillate in the crossflow direction with imposed rotation around its axis was studied experimentally. The rotation rate, α, defined as the ratio of the surface velocity and free stream velocity, was varied from 0 to 2.6 in small steps. The amplitudes and frequencies of oscillations as well as the flow forces were measured in a Reynolds number range of Re = 350 -1000. The maximum amplitude of oscillations was limited to values less than a diameter of the cylinder at high rotation rates. Also, the lock-in range became narrower at higher rotation rates and finally the oscillations ceased beyond α = 2.4. Vortex shedding pattern was found to be 2S (two single vortices shed per cycle of oscillations) for rotation rates up to α = 1.4 and transitioned toward an asymmetric P shedding (one pair of vortices shed in a cycle of oscillations) for rotation rates within the range of 1.4 ≤ α ≤ 1.8. Vortex shedding was found to persist up to higher rotation rates than those observed for a non-oscillating cylinder. The phase difference between the flow forces and displacement of the cylinder in the crossflow direction was influenced as the rotation rate was increased: At high reduced velocities, the phase difference decreased from 180° for a non-rotating cylinder to values close to 90° for a rotating cylinder at large rotation rates. Different shedding patterns resulted in flow forces with different frequencies. In the crossflow direction, the dominant frequency of flow forces was found to be close to the system’s natural frequency for all the rotation rates tested with either 2S or P vortex shedding pattern. In the inline direction, however, the change from 2S to P shedding at high rotation rates resulted in a shift of the ratio of the dominant frequency of the inline flow forces to the natural frequency of the system from 2:1 to 1:1.


Journal of Sound and Vibration | 2015

The influence of higher harmonic flow forces on the response of a curved circular cylinder undergoing vortex-induced vibration

Banafsheh Seyed-Aghazadeh; Collin Budz; Yahya Modarres-Sadeghi


Journal of Fluids and Structures | 2015

The influence of taper ratio on vortex-induced vibration of tapered cylinders in the crossflow direction

Banafsheh Seyed-Aghazadeh; Daniel Carlson; Yahya Modarres-Sadeghi


Journal of Fluid Mechanics | 2017

Vortex-induced vibration and galloping of prisms with triangular cross-sections

Banafsheh Seyed-Aghazadeh; Daniel Carlson; Yahya Modarres-Sadeghi


Journal of Fluids and Structures | 2016

Reconstructing the vortex-induced-vibration response of flexible cylinders using limited localized measurement points

Banafsheh Seyed-Aghazadeh; Yahya Modarres-Sadeghi


Computers & Fluids | 2016

CFD simulations and experimental measurements of flow past free-surface piercing, finite length cylinders with varying aspect ratios

Maija A. Benitz; Daniel Carlson; Banafsheh Seyed-Aghazadeh; Yahya Modarres-Sadeghi; Matthew A. Lackner; David P. Schmidt


Journal of Fluids and Structures | 2018

An experimental study to investigate the validity of the independence principle for vortex-induced vibration of a flexible cylinder over a range of angles of inclination

Banafsheh Seyed-Aghazadeh; Yahya Modarres-Sadeghi


Bulletin of the American Physical Society | 2017

Higher harmonic forces in the flow-induced response of bluff bodies with broken symmetry.

Yahya Modarres-Sadeghi; Banafsheh Seyed-Aghazadeh; Daniel Carlson


Bulletin of the American Physical Society | 2017

Flow-induced vibration study by exploiting inherent nonlinearity of structure

Banafsheh Seyed-Aghazadeh; Hamed Samandari


Bulletin of the American Physical Society | 2016

The effect of boundary conditions on VIV of a fully submerged flexible cylinder

Mahdiar Edraki; Banafsheh Seyed-Aghazadeh; Yahya Modarres-Sadeghi

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Yahya Modarres-Sadeghi

University of Massachusetts Amherst

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Daniel Carlson

University of Massachusetts Amherst

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Collin Budz

University of Massachusetts Amherst

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Pariya Pourazarm

University of Massachusetts Amherst

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David P. Schmidt

University of Massachusetts Amherst

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Maija A. Benitz

University of Massachusetts Amherst

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Matthew A. Lackner

University of Massachusetts Amherst

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Michael S. Triantafyllou

Massachusetts Institute of Technology

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Paul Sievert

Northwestern University

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