首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >NUMERICAL MODELLING OF FIXED OSCILLATING WATER COLUMN WAVE ENERGY CONVERSION DEVICES: TOWARD GEOMETRY HYDRAULIC OPTIMIZATION
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NUMERICAL MODELLING OF FIXED OSCILLATING WATER COLUMN WAVE ENERGY CONVERSION DEVICES: TOWARD GEOMETRY HYDRAULIC OPTIMIZATION

机译:固定振荡水柱波能量转换装置的数值模拟:走向几何液压优化

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The Oscillating Water Column (OWC) is one of the simplest and most studied concepts for wave energy conversion. The commercial scale diffusion of the OWC technology is, however, strongly dependent upon the device optimization. Research at a fundamental level is therefore still required. Analytical, numerical and experimental models are necessary tools for advancing in the knowledge of the system and thus promoting its passage at the commercial level. In this work, a simplified frequency domain rigid piston model has been applied to preliminary select expected ranges of air pressures and air velocities for the instrumental set up of laboratory experiments. The set up of a Computational Fluid Dynamic (CFD) model implemented in the open source OpenFOAM~®' environment is then presented. The multiphase model solves incompressible 3D Navier-Stokes equations, using Large Eddy Simulation (LES) for turbulence modelling, and adopts a Volume of Fluid method (VOF) to track the air-water interface. A preliminary validation of the model with physical tests data is conducted. The numerical approach seems to be promising for an accurate simulation of the OWC device energy conversion process. Hence, the validated model can be a useful research tool for different problems, particularly for systematic parameter studies to extend the range of conditions tested in the laboratory.
机译:振荡水柱(OWC)是波浪能转换的最简单且研究最多的概念之一。但是,OWC技术的商业规模推广在很大程度上取决于设备的优化。因此,仍然需要从根本上进行研究。分析,数值和实验模型是提高系统知识,从而促进其在商业层面上通过的必要工具。在这项工作中,简化的频域刚性活塞模型已被用于初步选择预期的气压和风速范围,以用于实验室实验的仪器设置。然后介绍了在开源OpenFOAM®环境中实现的计算流体动力学(CFD)模型的建立。多相模型使用大涡模拟(LES)进行湍流建模,求解了不可压缩的3D Navier-Stokes方程,并采用流体体积法(VOF)跟踪空气-水界面。使用物理测试数据对模型进行了初步验证。对于OWC设备能量转换过程的精确模拟,数值方法似乎很有希望。因此,经过验证的模型可以成为解决各种问题的有用工具,特别是对于系统参数研究以扩展实验室测试条件的范围。

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