首页> 外文期刊>Journal of offshore mechanics and arctic engineering >Latching Control of an Oscillating Water Column Spar-Buoy Wave Energy Converter in Regular Waves
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Latching Control of an Oscillating Water Column Spar-Buoy Wave Energy Converter in Regular Waves

机译:规则波中振荡水柱晶格-浮标波能量转换器的锁存控制

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摘要

The present paper concerns an oscillating water column (OWC) spar-buoy, possibly the simplest concept for a floating OWC wave energy converter. It is an axisymmetric device (and so insensitive to wave direction) consisting basically of a (relatively long) submerged vertical tail tube open at both ends and fixed to a floater that moves essentially in heave. The length of the tube determines the resonance frequency of the inner water column. The oscillating motion of the internal free surface relative to the buoy, produced by the incident waves, makes the airflow through a turbine that drives an electrical generator. It is well known that the frequency response of point absorbers like the spar buoy is relatively narrow, which implies that their performance in irregular waves is relatively poor. Phase control has been proposed to improve this situation. The present paper presents a theoretical investigation of phase control through the latching of an OWC spar-buoy in which the compressibility of air in the chamber plays an important role (the latching is performed by fast closing and opening an air valve in series with the turbine). In particular, such compressibility may remove the constraint of the latching threshold having to coincide with an instant of zero relative velocity between the two bodies (in the case under consideration, between the floater and the OWC). The modeling is performed in the time domain for a given device geometry and includes the numerical optimization of the air turbine rotational speed, chamber volume, and latching parameters. Results are obtained for regular waves.
机译:本文涉及一种振荡水柱(OWC)的浮标,这可能是浮动OWC波能转换器的最简单概念。它是一种轴对称设备(对波浪方向不敏感),基本上由一个(相对长的)浸入水中的垂直尾管组成,两端在两端开口,并固定在一个基本起伏运动的浮子上。管的长度决定了内部水柱的共振频率。入射波产生的内部自由表面相对于浮标的振荡运动,使气流通过驱动发电机的涡轮机。众所周知,点吸收器(如浮标)的频率响应相对较窄,这意味着它们在不规则波中的性能相对较差。已经提出了相位控制来改善这种情况。本文提出了通过OWC翼形浮标闭锁进行相位控制的理论研究,其中腔室中的空气可压缩性起着重要的作用(闭锁是通过快速关闭和打开与涡轮机串联的空气阀来完成的) )。特别地,这种可压缩性可以消除闩锁阈值的约束,该约束必须与两个物体之间(在考虑中的情况下,在浮子和OWC之间)的相对速度为零的瞬间一致。对于给定的设备几何形状,在时域中执行建模,包括对空气涡轮转速,腔室容积和闭锁参数进行数值优化。获得规则波的结果。

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  • 来源
    《Journal of offshore mechanics and arctic engineering》 |2013年第2期|021902.1-021902.8|共8页
  • 作者单位

    IDMEC,Institute Superior Tecnico,Technical University of Lisbon,Av. Rovisco Pais,1049-001 Lisbon, Portugal;

    IDMEC,Institute Superior Tecnico,Technical University of Lisbon,Av. Rovisco Pais,1049-001 Lisbon, Portugal;

    IDMEC,Institute Superior Tecnico,Technical University of Lisbon,Av. Rovisco Pais,1049-001 Lisbon, Portugal;

    IDMEC,Institute Superior Tecnico,Technical University of Lisbon,Av. Rovisco Pais,1049-001 Lisbon, Portugal;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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