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原文传递 Experimental Assessment of Hydrodynamic Coefficients for a Heave Plate Executing Pitch Oscillations
题名: Experimental Assessment of Hydrodynamic Coefficients for a Heave Plate Executing Pitch Oscillations
正文语种: eng
作者: Abuzar Abazari;Mehdi Behzad;Krish P. Thiagarajan
作者单位: Marine Engineering Dept. Chabahar Maritime Univ. Chabahar 99717-78631 Iran;Mechanical Engineering Dept. Sharif Univ. of Technology Tehran 11155-9567 Iran;Dept. of Mechanical and Industrial Engineering Univ. of Massachusetts Amherst Amherst MA 01003 Advanced Structures and Composites Center Univ. of Maine Orono ME 04469
关键词: Heave plates; Added mass; Hydrodynamic damping; Pitch oscillations; Hydrodynamic coefficients; Forced harmonic oscillation; Rotational axis; Rigid disk
摘要: A submerged oscillating heave plate is utilized as a mechanism in some marine structures for vibration reduction. Quantifying the hydrodynamic properties in axial (heave) oscillations has been extensively archived in published research. However, the rotational hydrodynamic properties of an isolated plate under forced oscillation have not been investigated, which may be of relevance when such structures undergo roll or pitch oscillations. This paper reports on an experimental study that aims to find the trends of the rotational hydrodynamic coefficients versus vibration amplitude for an isolated disk. Furthermore, formulae for nondimensional rotational coefficients based on empirical fits to experimental data will help to generalize these coefficients to full scale. The experimental tests were conducted in two sets. In the first set, disks of different sizes were excited in rotation around their central axis, whereas in the second set the disks were oscillated at a distance from the rotational axis. Generally and in accordance with results for heave oscillations, the results of the hydrodynamic coefficients show an increasing linear trend versus vibration amplitude.
出版年: 2022
期刊名称: Journal of Waterway, Port, Coastal and Ocean Engineering
卷: 148
期: 1
页码: 04021038.1-04021038.13
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