固定式平板防波堤结构受力特性分析

ANALYSIS OF MECHANICAL PERFORMANCE CHARACTERISTICS OF FIXED FLAT BREAKWATER STRUCTURES

  • 摘要: 平板防波堤可作为海上漂浮式光伏发电系统外围消浪设施的低成本方案。通过物理模型试验和Fluent数值模拟相结合的方法,对固定式单层平板防波堤的受力特性进行了分析,讨论了平板防波堤最大竖向受力与相对板宽,相对潜深和相对波高之间的关系。根据分析结果提出了计算平板防波堤无量纲最大总压力和无量纲最大总浮托力的简化公式。经计算,公式预测结果与双层和多层平板防波堤统计结果拟合误差小于10%,简化公式可应用于任意层数的固定式平板防波堤最大竖向受力的估算。

     

    Abstract: Plate breakwaters have been identified as a cost-effective solution for wave dissipation infrastructure at the periphery of offshore floating photovoltaic systems. The force characteristics of fixed single-plate breakwaters are analyzed through physical model tests and numerical simulations. The relationship among the maximum vertical force of the plate breakwaters, the relative plate width, relative submergence depth, and relative wave height is examined. Subsequently, simplified formulas are proposed for calculating the dimensionless maximum total pressure and dimensionless maximum total buoyancy force of the plate breakwaters. The results demonstrate that the fitting errors between the formula predictions and the statistical data of double-layer and multi-layer plate breakwaters remain below 10%. This indicates that the simplified formulas can be effectively applied to estimate the maximum vertical forces in fixed plate breakwaters with arbitrary layer configurations.

     

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