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Coherent and turbulent processes in the bistable regime around a tandem of cylinders including reattached flow dynamics by means of high-speed PIV
Institution:1. Institut de Mécanique des Fluides de Toulouse, IMFT- UMR CNRS 5502, France;2. ICUBE, Laboratoire des sciences de l?ingénieur, de l?informatique et de l?imagerie, Université de Strasbourg, UMR CNRS 7357, France;1. Department of Mechanical Engineering, Indian Institute of Technology Bombay, Mumbai 400076, India;2. Research and Development Division, TATA Steel, Jamshedpur 831001, India;1. Institute for Turbulence-Noise-Vibration Interaction and Control, Shenzhen Graduate School, Harbin Institute of Technology, Shenzhen, China;2. Key Lab of Advanced Manufacturing and Technology, Shenzhen Graduate School, Harbin Institute of Technology, Shenzhen, China;1. Department of Mechanical Engineering, University of Manitoba, Winnipeg, MB, Canada R3T 5V6;2. Department of Mechanical Engineering, University of Saskatchewan, Saskatoon, SK, Canada S7N 5A9
Abstract:The turbulent flow around two cylinders in tandem at the sub-critical Reynolds number range of order of 105 and pitch to diameter ratio of 3.7 is investigated by using time-resolved Particle Image Velocimetry (TRPIV) of 1 kHz and 8 kHz. The bi-stable flow regimes including a flow pattern I with a strong vortex shedding past the upstream and the downstream cylinder, as well as a flow pattern II corresponding to a weak alternating vortex shedding with reattachment past the upstream cylinder are investigated. The structure of this “reattachment regime” has been analyzed in association with the vortex dynamics past the downstream cylinder, by means of POD and phase-average decomposition. These elements allowed interconnection among all the measured PIV planes and hence analysis of the reattachment structure and the flow dynamics past both cylinders. The results highlight fundamental differences of the flow structure and dynamics around each cylinder and provide the ‘gap’ flow nature between the cylinders. Thanks to a high-speed camera of 8 kHz, the shear-layer vortices tracking has been possible downstream of the separation point and the quantification of their shedding frequency at the present high Reynolds number range has been achieved. This issue is important regarding fluid instabilities involved in the fluid–structure interaction of cylinder arrays in nuclear reactor systems, as well as acoustic noise generated from the tandem cylinders of a landing gear in aeronautics.
Keywords:Tandem cylinder  Time resolved PIV  Phase-average decomposition  POD
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