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Analysis of the SEA-OWC-Clam wave energy device – Part A:historical development, hydrodynamic and motion response formulations amp; solutions

机译:sEa-OWC-Clam波浪能装置的分析 - a部分:历史发展,水动力和运动响应公式&解决方案

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摘要

The SEA-Clam wave energy device has undergone the metamorphic changes presented in the historical development. Each variation leads to more complex hydrodynamic and motion responses. The most recent novel Oscillating Water Column (OWC) form of the device has multiple internal free surfaces, the motions of which are required to predict power take-off once a device specification with structural integrity has been identified. Motion equations for structure and the large number of degrees-of-freedom of the free surfaces modelled as massless plates are derived and presented in a very compact form. This paper also proffers two simpler models consistent with standard offshore engineering calculations. These are investigated within since structural integrity of device requires further refinement; as demonstrated in the companion paper. Quality checks of the hydrodynamic analyses are explained and applied to justify the numerical investigations undertaken. Sea spectra for the possible operational site of South Uist are used to generate motion transfer functions for associated wave frequency range. The peak pitch response of this large annular shaped structure is a main concern regarding survivability. The analyses undertaken reflect conceptual rather than detailed design status of the device.
机译:SEA-Clam波能装置经历了历史发展中呈现的变质变化。每种变化都会导致更复杂的水动力和运动响应。该设备的最新新颖振荡水柱(OWC)形式具有多个内部自由表面,一旦确定了具有结构完整性的设备规格,就需要通过其运动来预测取力。推导了结构的运动方程和以无质量板为模型的自由表面的大量自由度,并以非常紧凑的形式给出了运动方程。本文还提供了两个与标准海上工程计算一致的简单模型。由于设备的结构完整性需要进一步完善,因此需要对它们进行研究。如随附文件所示。解释了水动力分析的质量,并将其用于证明所进行的数值研究的合理性。 South Uist可能的作业地点的海频谱用于生成相关波频率范围的运动传递函数。这种大的环形结构的峰值螺距响应是有关生存能力的主要问题。进行的分析反映了设备的概念而非详细设计状态。

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