波浪能转换器系泊浮式平台的双物理数值模拟

B. Tagliafierro, I. Martínez-Estévez, César Crego-Loureiro, J. Dominguez, A. Crespo, R. Coe, G. Bacelli, M. Gómez-Gesteira, G. Viccione
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引用次数: 0

摘要

dualspphysics开源代码为模拟海岸和海洋工程结构建立了一个全面而高效的框架,该框架在波浪能转换器(WEC)模拟中已被证明是特别可靠的。在本研究中,使用浮动振荡浪涌能量转换器(FOSWEC)的实验数据进行验证。由桑迪亚国家实验室(美国)开发的FOSWEC2设备非常复杂,因为它有几个浮动部件,锚腿和一个动力起飞系统(PTO),连接到两个襟翼的俯仰运动。实际上,动能是由襟翼与平台活动框架之间的相对旋转转化而来,这对用时域集成方法验证FOSWEC提出了重大挑战。这项工作提出了使用规则波进行的第一次验证活动,并考虑了PTO系统定义的不同参数。对平台运动(浪涌和俯仰)和相对襟翼俯仰角(船首和船尾)的数值模型预测表明,该模型能够处理与波浪力相互作用的多体动力学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Modeling of Moored Floating Platforms for Wave Energy Converters Using DualSPHysics
The DualSPHysics open-source code establishes a comprehensive and efficient framework for simulating coastal and ocean engineering structures, which has been proven to be particularly reliable in wave energy converter (WEC) simulation. In this research, the experimental data of the floating oscillating surge wave energy converter (FOSWEC), is used for validation purposes. The FOSWEC2 device developed by SANDIA National Laboratories (US) is quite complex as it has several floating parts, anchor legs and a power take-off system (PTO) connected to the pitching motion of two flaps. Kinetic energy is in fact converted from the relative rotation between the flaps and a movable frame of the platform, setting a significant challenge for the validation of the FOSWEC with time-domain integrated methods. This work proposes a first validation campaign carried out using regular waves, and considering different parameters for the definition of the PTO system. The numerical model prediction for the platform motion (surge and pitch) and the relative flap pitch angle (bow and aft) shows that the model is able to deal with multi-body dynamics interacting with wave-induced forces.
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