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Dive into the research topics where Q. Ni is active.

Publication


Featured researches published by Q. Ni.


Journal of Vibration and Control | 2015

Nonconservative pipes conveying fluid: evolution of mode shapes with increasing flow velocity

L. Wang; H.L. Dai; Q. Ni

When the velocity of fluid flow in a cantilevered pipe is successively increased, the vibration characteristics of the system may vary remarkably. This paper is concerned with exploring the evolution of the actual mode shapes of the pipe with increasing flow velocity. Results show that the mode shapes of the cantilevered system may dramatically change due to the increment of flow velocity. At higher flow velocity, these mode shapes, indeed, differ much from those of the classical cantilevered beam. When a critical mass ratio at which the so-called ‘mode exchange’ phenomenon occurs was chosen, the corresponding two modes of the cantilevered pipe would have the same shape. In addition, the nonlinear responses of the system have also been linked to the lowest three mode shapes by comparing the calculated mode shapes with the limit-cycle motions obtained experimentally.


Physica E-low-dimensional Systems & Nanostructures | 2008

THE THERMAL EFFECT ON VIBRATION AND INSTABILITY OF CARBON NANOTUBES CONVEYING FLUID

L. Wang; Q. Ni; M. Li; Q. Qian


Mechanics Research Communications | 2009

A reappraisal of the computational modelling of carbon nanotubes conveying viscous fluid

L. Wang; Q. Ni


International Journal of Engineering Science | 2014

Nonlinear modeling and size-dependent vibration analysis of curved microtubes conveying fluid based on modified couple stress theory

Min Tang; Q. Ni; L. Wang; Yangyang Luo; Yikun Wang


Computational Materials Science | 2008

Buckling instability of double-wall carbon nanotubes conveying fluid

L. Wang; Q. Ni; M. Li


International Journal of Engineering Science | 2013

SIZE-DEPENDENT VIBRATION ANALYSIS OF THREE-DIMENSIONAL CYLINDRICAL MICROBEAMS BASED ON MODIFIED COUPLE STRESS THEORY: A UNIFIED TREATMENT

L. Wang; Y.Y. Xu; Q. Ni


International Journal of Engineering Science | 2013

Flexural vibrations of microscale pipes conveying fluid by considering the size effects of micro-flow and micro-structure

L. Wang; Haowen Liu; Q. Ni; Yi-Long Wu


Microfluidics and Nanofluidics | 2015

Dynamics and pull-in instability of electrostatically actuated microbeams conveying fluid

H.L. Dai; L. Wang; Q. Ni


Journal of Fluids and Structures | 2013

Vortex-induced vibrations of pipes conveying fluid in the subcritical and supercritical regimes

H.L. Dai; L. Wang; Q. Qian; Q. Ni


Ocean Engineering | 2014

Vortex-induced vibrations of pipes conveying pulsating fluid

H.L. Dai; L. Wang; Q. Qian; Q. Ni

Collaboration


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L. Wang

Huazhong University of Science and Technology

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H.L. Dai

Huazhong University of Science and Technology

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Min Tang

Huazhong University of Science and Technology

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Yangyang Luo

Huazhong University of Science and Technology

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Q. Qian

Huazhong University of Science and Technology

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Yikun Wang

Huazhong University of Science and Technology

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M. Li

Wuhan Institute of Technology

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Mingwu Li

Huazhong University of Science and Technology

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Hao Yan

Huazhong University of Science and Technology

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Haowen Liu

Huazhong University of Science and Technology

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