Numerical Analysis for Predicting the Performance of Wave Observation Buoy: Dynamic Analysis under Regular Wave

Insik Chun, In-ki Min, Yongchim Min, Byungcheol Oh, J. Shim
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Abstract

The prediction of the performance of a wave observation buoy is very important to acquire both in-situ security and good observation quality. In the present study, a numerical method was set up to analyze the dynamic interaction of a spherical buoy with its single point mooring line subject to regular wave conditions. The method was applied to the condition of an existing hydraulic experiment, producing results that are well compatible with experimental results within the limited accuracy of the available data. It was argued that some discrepancies between the numerical and experimental results might be due to the uncertainties of the wave exciting forces acting on the buoy and the experimental conditions of mooring line. The method was finally applied to demonstrate two practical issues related to in-situ wave height measurements; the effect of buoy size on resulting heave motion and the aspect of the numerical integration of heave acceleration to get wave profile.
波浪观测浮标性能预测的数值分析:规则波作用下的动力分析
波浪观测浮标的性能预测是保证现场安全、保证观测质量的重要手段。本文建立了一种数值方法来分析规则波浪条件下球形浮标与单点系泊线的动力相互作用。将该方法应用于已有的水力实验条件下,在现有数据的有限精度范围内,得到的结果与实验结果吻合较好。数值结果与实验结果之间的差异可能是由于浮标所受波浪激励力的不确定性和系泊绳实验条件的不确定性所致。最后,将该方法应用于两个与原位波高测量相关的实际问题;浮标尺寸对产生的升沉运动的影响及升沉加速度数值积分得到波浪剖面的方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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