The Impact of Modelling Air Compressibility in the Selection of Optimal OWC Design Parameters in Site Specific Wave Conditions

I. Simonetti, L. Cappietti
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引用次数: 2

Abstract

The importance of properly modelling the effects of air compressibility in the selection of the optimal design parameters for an Oscillating Water Column wave energy converter is investigated. For this purpose, a wide dataset of capture width ratios, obtained from both experimental tests and Computational Fluid Dynamic simulations, is used to formulate an empirical model able to predict the performance of the device as a function of its basic design parameters (chamber width and draught, turbine damping) and of the wave conditions (wave period, wave height). A multiple non-linear regression approach is used to determine the model numerical coefficients. The data used to formulate the model include the effects of air compressibility. The impact of considering such effects on the selection of the optimal geometry of the device is evaluated and discussed by means of the model application for the optimization of a device to be installed in a site located in the Mediterranean Sea (in front of the coast of Tuscany, Italy).
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模拟空气可压缩性对场地特定波浪条件下OWC优化设计参数选择的影响
研究了合理模拟空气可压缩性对振荡水柱波能转换器优化设计参数选择的重要性。为此,使用从实验测试和计算流体动力学模拟中获得的捕获宽度比的广泛数据集来制定一个经验模型,该模型能够预测该装置的性能作为其基本设计参数(室宽和吃水,涡轮机阻尼)和波浪条件(波浪周期,波高)的函数。采用多元非线性回归方法确定模型数值系数。用于建立模型的数据包括空气可压缩性的影响。考虑到这些影响对设备最佳几何形状选择的影响,通过模型应用程序进行评估和讨论,以优化安装在地中海(意大利托斯卡纳海岸前)地点的设备。
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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