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Mathematical and numerical modeling of the AquaBuOY wave energy converter.

机译:AquaBuOY波能转换器的数学和数值模型。

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摘要

This paper presents the mathematical modeling and numerical methodology performed prior to the prototype deployment of the AquaBuOY, one of the few wave energy devices that have reached the ocean deployment stage. The combination of numerical computations, and laboratory testing produced some encouraging findings about how the AquaBuOY responds to real wave conditions. However, it also highlighted deficiencies in some of the early modeling, which emphasized the need for a time domain model in realistic wave conditions that includes accurate hydrodynamic and drag coefficients. udThis paper focuses on the governing equations that model the vertical dynamics of the AquaBuOY and the numerical solutions of these equations in order to predict the absorbed power of the device. Numerical results are presented in the time domain for both regular and irregular wave regimes (realistic wave conditions) as well as compared to experimental data in a regular wave regime. ududWhile the two body system is challenging to model, due to the inclusion of variables such as the wave forcing term as well as identifying the non linear damping term along with a linear spring term needed to model the power takeoff system, it does provide a robust tool for wave energy research.ud
机译:本文介绍了AquaBuOY原型部署之前执行的数学建模和数值方法,AquaBuOY是进入海洋部署阶段的少数波浪能设备之一。数值计算和实验室测试相结合,得出了一些令人鼓舞的发现,有关AquaBuOY如何响应实际波浪条件。但是,它也强调了某些早期建模的缺陷,强调了在实际波浪条件下需要时域模型的必要性,其中包括精确的水动力系数和阻力系数。 ud本文着重于对AquaBuOY的垂直动力学建模的控制方程式以及这些方程式的数值解,以便预测设备的吸收功率。数值结果在时域中显示了常规和不规则波浪形式(实际波浪条件),并与常规波浪形式的实验数据进行了比较。 ud ud虽然两体系统在建模方面具有挑战性,但由于包含变量(例如,波浪强迫项)以及识别非线性阻尼项以及建模动力输出系统所需的线性弹簧项,因此它确实为波浪能研究提供了可靠的工具。 ud

著录项

  • 作者

    Wacher Abigail; Nielsen Kim;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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