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Nonlinear time-domain NWT simulations for two types of a backward bent duct buoy (BBDB) compared with 2D wave-tank experiments

机译:与二维波箱实验相比,两种类型的后弯导管浮标(BBDB)的非线性时域NWT模拟

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摘要

A fully nonlinear time-domain NWT-simulation tool has been developed with nonlinear viscous-damping and pneumatic pressure terms. The tool was applied to the performance evaluation of fixed/floating sharp-corner and round-corner BBDB WECs. Shape-induced and motion-induced viscous damping for the BBDB system was considered in the potential-flow-based simulation with quadratic pneumatic pressure and fully nonlinear free-surface conditions. Systematic experiments were also conducted in a two-dimensional wave tank to verify the NWT-simulation results. The numerical results were further verified by checking the total power conservation of the entire system. The nonlinear simulations were also compared with linear ones. Since the round-corner BBDB has less energy loss caused by body shape and motion, the available power of the round-corner BBDB is generally bigger than that of the sharp-corner BBDB. The phenomenon of negative drift motion for only the sharp-corner BBDB for a certain wave-length range was also reproduced by the fully nonlinear BBDB simulations. This numerical simulation tool can be used for the reliable design of prototype systems for a given site and environmental conditions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:已经开发了具有非线性粘滞阻尼和气压项的完全非线性时域NWT模拟工具。该工具被用于固定/浮动的锐角和圆角BBDB WEC的性能评估。在基于势流的模拟中考虑了BBDB系统的形状诱发和运动诱发的粘性阻尼,并具有二次气动压力和完全非线性的自由表面条件。还在二维波箱中进行了系统实验,以验证NWT模拟结果。通过检查整个系统的总功耗,进一步验证了数值结果。非线性仿真也与线性仿真进行了比较。由于圆角BBDB具有较少的因身体形状和运动引起的能量损失,因此圆角BBDB的可用功率通常大于尖角BBDB的可用功率。完全非线性的BBDB模拟也再现了仅锐角BBDB在特定波长范围内的负漂移运动现象。该数值模拟工具可用于给定地点和环境条件下可靠地设计原型系统。 (C)2015 Elsevier Ltd.保留所有权利。

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