首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2010 >A NUMERICAL STUDY OF WAVE ENERGY CONVERTER IN THE FORM OF AN OSCILLATING WATER COLUMN BASED ON A MIXED EULERIAN-LAGRANGIAN FORMULATION
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A NUMERICAL STUDY OF WAVE ENERGY CONVERTER IN THE FORM OF AN OSCILLATING WATER COLUMN BASED ON A MIXED EULERIAN-LAGRANGIAN FORMULATION

机译:基于欧拉-拉格朗日混合公式的振荡水柱形式波能换能器的数值研究

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A desingularized boundary integral equation method (DBIEM) is employed to study the wave energy extraction by an oscillating water column (OWC) device. The method is based on a mixed-Eulerian-Lagrangian formulation. We examine the effects of the relative draught on the efficiency of 2D OWC energy converters. The oscillating air pressure inside the OWC chamber is modeled by assuming that the air is incompressible and the air-turbine mass-flow rate is proportional to the pressure difference (a linear turbine). For shallow draughts the numerical results agree well with available analytical results. The wave-excited seiching inside the extraction chamber is discussed and the variation of extraction efficiency with dimensionless air-chamber width for different immersion depths is reported.
机译:采用去异化边界积分方程法(DBIEM)研究了振荡水柱(OWC)装置提取波能的方法。该方法基于混合的欧拉-拉格朗日公式。我们研究了相对吃水对二维OWC能量转换器效率的影响。通过假设空气不可压缩并且空气涡轮机的质量流量与压力差成比例(线性涡轮机),对OWC腔室内的振荡空气压力进行建模。对于较浅的吃水深度,数值结果与可用的分析结果非常吻合。讨论了抽气室内的波激励振动,并记录了不同浸入深度下抽气效率随无量纲气室宽度的变化。

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