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Frequency and time domain modeling and power output for a heaving point absorber wave energy converter

机译:垂点吸收波能量转换器的频域和时域建模以及功率输出

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This paper presents, assesses, and optimizes a point absorber wave energy converter (WEC) through numerical modeling, simulation, and analysis in both frequency and time domain. Wave energy conversion is a technology especially suited for assisting in power generation in the offshore oil and gas platforms. A linear frequency domain model is created to predict the behavior of the heaving point absorber WEC system. The hydrodynamic parameters are obtained with AQWA, a software package based on boundary element methods. A linear external damping coefficient is applied to enable power absorption, and an external spring force is introduced to tune the point absorber to the incoming wave conditions. The external damping coefficient and external spring forces are the control parameters, which need to be optimized to maximize the power absorption. Two buoy shapes are tested and a variety of diameters and drafts are compared. Optimal shape, draft, and diameter of the model are then determined to maximize its power absorption capacity. Based on the results generated from the frequency domain analysis, a time domain analysis was also conducted to derive the responses of the WEC in the hydrodynamic time response domain. The time domain analysis results allowed us to estimate the power output of this WEC system.
机译:本文通过在频域和时域的数值建模,仿真和分析,介绍,评估和优化了点吸收器波能转换器(WEC)。波浪能转换是一项特别适用于辅助海上油气平台发电的技术。创建线性频域模型以预测升沉点吸收器WEC系统的行为。使用AQWA(基于边界元方法的软件包)获得流体动力学参数。应用线性外部阻尼系数以实现功率吸收,并引入外部弹簧力以将点吸收器调整到入射波条件。外部阻尼系数和外部弹簧力是控制参数,需要对其进行优化以最大程度地吸收功率。测试了两个浮标的形状,并比较了各种直径和吃水深度。然后确定模型的最佳形状,吃水和直径,以最大化其功率吸收能力。根据频域分析产生的结果,还进行了时域分析,以得出水动力时间响应域中WEC的响应。时域分析结果使我们能够估算该WEC系统的功率输出。

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