首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >COMPARISON OF MOORING LOADS IN SURVIVABILITY MODE ON THE WAVE DRAGON WAVE ENERGY CONVERTER OBTAINED BY A NUMERICAL MODEL AND EXPERIMENTAL DATA
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COMPARISON OF MOORING LOADS IN SURVIVABILITY MODE ON THE WAVE DRAGON WAVE ENERGY CONVERTER OBTAINED BY A NUMERICAL MODEL AND EXPERIMENTAL DATA

机译:数值模型和实验数据在波龙能量转换器生存模式下系泊载荷的比较。

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The Wave Dragon Wave Energy Converter is ready to be up-scaled to commercial size. The design and feasibility analysis of a 1.5 MW pre-commercial unit to be deployed at the DanWEC test center in Hanstholm, Denmark, is currently ongoing. With regard to the mooring system, the design has to be carried out numerically, through coupled analyses of alternative solutions. The present study deals with the preliminary hydrodynamic characterization of Wave Dragon needed in order to calibrate the numerical model to be used for the mooring design. A hydrodynamic analysis of the small scale model in the frequency domain is performed by the software HydroD, which uses WAMIT as core software. The quadratic damping term, accounting for the viscous effect, is determined through an iterative procedure aimed at matching numerical predictions on the mooring tension, derived through time domain coupled analysis, with experimental results derived from tank tests of a small scale model. Due to the complex geometry of the device, a sensitivity analysis is performed to discuss the influence of the mean position on the quality of the numerical predictions. Good correspondence is achieved between the experimental and numerical model. The numerical model is hence considered reliable for future design applications.
机译:Wave Dragon Wave能量转换器已准备好升级到商业规模。目前正在进行1.5 MW商用前机组的设计和可行性分析,该机组将在丹麦Hanstholm的DanWEC测试中心进行部署。关于系泊系统,必须通过对替代解决方案的耦合分析,以数字方式进行设计。本研究涉及为校准用于系泊设计的数值模型而需要的Wave Dragon的初步流体动力特性。小规模模型在频域中的水动力分析是由HydroD软件进行的,该软件使用WAMIT作为核心软件。二次阻尼项,考虑了粘性效应,是通过一个迭代程序确定的,该迭代程序旨在匹配通过时域耦合分析得出的系泊张力的数值预测,并从小规模模型的储罐测试得出实验结果。由于设备的几何形状复杂,因此进行了敏感性分析,以讨论平均位置对数值预测质量的影响。实验模型和数值模型之间实现了良好的对应关系。因此,数值模型被认为对于未来的设计应用是可靠的。

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