对浮标设计进行数值分析,提取有效波浪动能

IF 0.5 Q4 ANESTHESIOLOGY Ain-Shams Journal of Anesthesiology Pub Date : 2023-07-01 DOI:10.59660/467313
Mohamed Walid Abd Elhamed Ahmed Refae, Ahmed S. Shehata, M. Kotb
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引用次数: 0

摘要

在许多国家,海浪能正被越来越广泛地认为是一种重要和有希望的资源。本研究的目的是利用计算流体动力学(CFD)来评估浮标动态行为的变化,以评估浮标形状变化对波浪模型效果的影响。利用ANSYS Fluent、流体体积法、明渠流模块和5阶Stokes波模型对浮筒的行为进行了模拟。为了进一步研究复杂环境下的波敏感性,在高波陡的浅域应用了Stokes波。验证过程包括对实际结果和数学结果进行对比分析。对数值流体力学计算结果进行了比较,并对实验室观测结果进行了修正。针对不同的水下浮力配置,对数值结果进行了阻力和升力特性分析。本研究的目的是确定最佳的浮标形状。这种形状的选择是基于几个因素,其中最重要的是最小的熵,以及最大的升力和阻力系数。理想形状被确定为球形(形状B)。
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Numerical analysis of the buoy design to extract the effective kinetic wave energy
In many countries, sea wave energy is becoming more widely recognized as a significant and hopeful resource. The objective of this research is to evaluate the impact of alterations in buoy shape on the efficacy of the wave model by utilizing Computational Fluid Dynamics (CFD) to assess modifications in the buoy's dynamic behavior. The buoy's behavior is simulated using ANSYS Fluent, the volume of fluid approach, the open channel flow module, and 5th order Stokes wave models. To further investigate the wave sensitivity in challenging circumstances, Stokes waves were applied in the shallow domain at high wave steepness. The validation process consisted of a comparative analysis between the practical and mathematical results. The outcomes of a numerical fluid dynamical computation were compared, and laboratory observations were modified. For various configurations of underwater buoyancy, the drag and lift characteristics of numerical results were analyzed. The aim of this study was to identify the optimum buoy shape. The selection of this shape was based on several factors, of which the most significant were the least entropy, as well as the maximum lift and drag coefficient. Ideal shape was determined to be a spherical shape (shape B).
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