【2h】

Wave energy devices with compressible volumes

机译:体积可压缩的波浪能设备

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摘要

We present an analysis of wave energy devices with air-filled compressible submerged volumes, where variability of volume is achieved by means of a horizontal surface free to move up and down relative to the body. An analysis of bodies without power take-off (PTO) systems is first presented to demonstrate the positive effects a compressible volume could have on the body response. Subsequently, two compressible device variations are analysed. In the first variation, the compressible volume is connected to a fixed volume via an air turbine for PTO. In the second variation, a water column separates the compressible volume from another volume, which is fitted with an air turbine open to the atmosphere. Both floating and bottom-fixed, axisymmetric, configurations are considered, and linear analysis is employed throughout. Advantages and disadvantages of each device are examined in detail. Some configurations with displaced volumes less than 2000 m3 and with constant turbine coefficients are shown to be capable of achieving 80% of the theoretical maximum absorbed power over a wave period range of about 4 s.
机译:我们对充气式可压缩浸没体积的波浪能装置进行了分析,其中体积的可变性是通过相对于身体自由上下移动的水平面来实现的。首先对没有动力输出(PTO)系统的车身进行了分析,以证明可压缩体积可能对人体响应产生积极影响。随后,分析了两个可压缩设备的变化。在第一变型中,可压缩体积经由用于PTO的空气涡轮机连接至固定体积。在第二变型中,水柱将可压缩空间与另一空间分开,该另一空间装有向大气开放的空气涡轮。浮动和底部固定的轴对称配置均被考虑,并且始终采用线性分析。详细检查每个设备的优缺点。某些排量小于2000 m 3 且涡轮系数恒定的配置显示出能够在大约4 s的波周期范围内达到理论最大吸收功率的80%。

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