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A linearized model for estimating the performance of submerged resonant wave energy converters

机译:用于估计淹没谐振波能量转换器性能的线性模型

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A realistic performance analysis of oscillating water column wave energy converters (WECs) addresses to a set of non-linear differential equations that need to be integrated in time, by using a stochastic approach, under the hypothesis of random wind-generated sea waves, for all the sea states which characterize the location of the system. Non-linearities of the differential equations have several origins:1. minor and major losses of the unsteady flow of water and air; 2. compressibility of air and heat exchange with the walls of the air chamber; 3. non-linear characteristics of the turbine. Under the hypothesis of random sea waves with Gaussian distribution, the authors propose an original methodology for linearizing the differential equations that describe the flow motion inside a wholly submerged WEC. Under such hypothesis, the linearized model can be used for predicting the power output by means of the calculations in the frequency domain and for control design. The developed methodology has been applied to the estimation of the performance of the new "resonant sea wave energy converters", called REWEC, patented by Boccotti in 1998, and consisting of several caissons, characterized by a structure similar to the caissons of the traditional breakwaters and placed on the seabed, close one to each other, to form a submerged breakwater. Each caisson is connected to a vertical duct wholly beneath the sea level, where a hydraulic Wells turbine is placed. The matching between turbine and resonance characteristic of the system is carefully analysed in order to maximize the energy conversion efficiency. Some results, given for a small installation in the Mediterranean sea, confirm that the REWEC system is able to absorb a large share of the incident wave energy due to a very simple regulation system which permits the tuning on sea states with different significant heights.
机译:振动水柱波能量转换器(WEC)的实际性能分析解决了一组非线性微分方程,该方程需要在随机风力产生的海浪假设下使用随机方法通过随机方法及时进行积分。所有表征系统位置的海况。微分方程的非线性有以下几个来源:1。水和空气不稳定流动的轻微和重大损失; 2.空气的压缩性和与气室壁的热交换; 3.涡轮的非线性特性。在具有高斯分布的随机海浪的假设下,作者提出了一种线性化微分方程的原始方法,该微分方程描述了完全淹没的WEC内部的水流运动。在这种假设下,线性化模型可用于通过频域中的计算来预测功率输出并用于控制设计。所开发的方法已用于估算称为REWEC的新型“共振海浪能量转换器”的性能,该转换器由Boccotti于1998年申请专利,由多个沉箱组成,其结构类似于传统防波堤的沉箱。并置于彼此靠近的海床上,形成淹没的防波堤。每个沉箱都连接到整个海平面以下的垂直管道,在该管道中放置了液压Wells涡轮机。涡轮和系统的共振特性之间的匹配经过仔细分析,以使能量转换效率最大化。一些针对地中海小规模安装的结果表明,由于非常简单的调节系统,REWEC系统能够吸收大部分入射波能量,该调节系统允许在具有不同有效高度的海况上进行调节。

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