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ONE DEGREE OF FREEDOM GYROSCOPIC MECHANISM FOR WAVE ENERGY CONVERTERS

机译:波能量转换器的一自由度陀螺机理

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摘要

Sea waves are one of the most interesting and well distributed renewable energy sources in the world. At the current state of the art, all the existing sea wave energy conversion systems are designed to operate offshore, mainly in the oceans where the waves' height is definitely high. In the Mediterranean Sea, waves are generally low, except under particular meteorological conditions. Thus, it is necessary to develop devices that can exploit other properties of the waves instead of their height, like wave slopes.rnIn this work a solution for this application is analysed, based on a conversion device characterised by floating positioning (without fixed link or basement at depth level), vertical axis geometry (to exploit any kind of wave, regardless of their direction, without the need for orientation systems), working principle based on an inertial system obtained by a rotor thanks to gyroscopic effect (that can be tuned to maximise the efficiency of the transformation process), and ability to work even with low amplitude waves (up to 0.5 m) typical of the Mediterranean Sea.rnThe work follows three steps: first of all, the mechanical system is described with an analytical approach, secondly the mathematical model is implemented, and, finally, it's tested in simulated sea environments. A system analytical model will be shown and some numerical results will be remarked.
机译:海浪是世界上最有趣,分布最均匀的可再生能源之一。在当前的最新技术水平下,所有现有的海浪能量转换系统都设计为在海上作业,主要是在海浪高度肯定很高的海洋中。在地中海,除特殊的气象条件外,海浪一般较低。因此,有必要开发一种可以利用波浪的其他属性而不是其高度的设备,例如波浪的坡度。在这项工作中,将基于一种以浮动定位(无固定链接或地下层),垂直轴几何形状(可利用任何类型的波,而不论其方向如何,而无需定向系统),基于由陀螺效应产生的转子所获得的惯性系统的工作原理(可以进行调整)以最大程度地提高转换过程的效率)以及即使在典型的地中海低振幅波(最大0.5 m)下也能工作的能力。rn该工作分为三个步骤:首先,通过分析方法描述机械系统,然后实施数学模型,最后在模拟海洋环境中对其进行测试。将显示系统分析模型,并标记一些数值结果。

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