نتایج جستجو برای: whirling analysis

تعداد نتایج: 2824467  

Journal: :IOP Conference Series: Materials Science and Engineering 2017

2015
T. L. Hill A. Cammarano S. A. Neild D. J. Wagg

Resonance is an important phenomenon in vibrating systems and, in systems of nonlinear coupled oscillators, resonant interactions can occur between constituent parts of the system. In this paper, out-of-unison resonance is defined as a solution in which components of the response are 90° out-of-phase, in contrast to the in-unison responses that are normally considered. A well-known physical exa...

Journal: :Journal of Fluid Mechanics 2022

We study a gravity-driven viscous flow coating vertical cylindrical fibre. The destabilisation of draining liquid column into downward moving train beads has been linked to the conjunction Rayleigh–Plateau and Kapitza instabilities in limit small Bond numbers $Bo$ . Here, we focus on quasi-inertialess flows (large Ohnesorge number $Oh$ ) conduct linear stability analysis unidirectional along ri...

Journal: :Diseases of aquatic organisms 2000
R P Hedrick T S McDowell G D Marty K Mukkatira D B Antonio K B Andree Z Bukhari T Clancy

The effects of ultraviolet (UV) irradiation on the viability of the waterborne triactinomyxon stages of Myxobolus cerebralis were evaluated by vital staining and the infectivity for juvenile rainbow trout Oncorhynchus mykiss. A dose of 1300 mWs cm-2 was required to inactivate 100% of the triactinomyxons held under a static collimated beam of UV as determined by vital staining. Juvenile rainbow ...

2012
Ahna Van Gaest Mary R. Arkoosh Joseph P. Dietrich

Whirling disease is a serious problem that impacts wild and hatchery salmonid stocks across the globe. Whirling disease is caused by a microscopic parasite, Myxobolus cerebralis, with a complex life history involving both salmonid and oligochaete worm hosts. In this study, we investigated the capability of wildland firefighting foams to inactivate M. cerebralis by indirect methods. Specifically...

2005
YANG LIANG B. F. FEENY

A harmonic balance based identification algorithm was applied to the simulated single pendulum with horizontal base-excitation. The purpose of this simulation was to examine the applicability of the algorithm on parametrically excited, whirling chaotic systems. Modifications were adopted to adapt to the whirling systems. The system was supposed to be unknown except only the excitation frequency...

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