近海固定振荡水柱试验的数值验证

Milad Zabihi, S. Mazaheri, M. Namin
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引用次数: 2

摘要

文章历史:收稿日期:2018年9月18日收稿日期:2019年2月16日供应世界未来能源与可再生能源紧密相连,波浪能是可再生能源中最大的尚未开发的资源之一。振荡水柱(OWC)是波浪能利用中最常见的装置之一,但由于其复杂的水动力特性,目前还没有得到适当的商业化应用。近海近海油田暴露在更高的波浪能量中;然而,对这种OWCs的研究是有限的。因此,本文利用Ansys Fluent软件,建立了海上固定OWC的全非线性两相流模型。与以往的研究不同,所开发的数值模型具有在相对大尺度的物理模型(1:15)上进行验证的优点。将模型的计算结果与作者的实验结果进行了比较。对空压室内的自由表面高程和空气压力进行了比较。结果表明,数值模型与实验模型基本吻合。实验室内自由面高程存在一定的差异,特别是在短波段。这可能是由于波浪陡度的增加增加了腔室内的非线性效应。所建立的模型可用于OWCs的进一步研究,如优化或提高OWCs的性能。
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Numerical Validation of Experimental Tests Conducted on a Fixed Offshore Oscillating Water Column
Article History: Received: 18 Sep. 2018 Accepted: 16 Feb. 2019 Supplying world future energy is tied with renewable energies and wave energy is one of the biggest resources of renewable energy which is somehow untapped. Oscillating Water Column (OWC), one of the most familiar devices in harnessing wave energy, is still not being properly commercialized due to the complicated hydrodynamic behavior. Offshore OWCs are exposed to higher wave energy; however, the researches on this kind of OWCs is limited. Hence, in this paper, a fully nonlinear two phase flow model of a fixed offshore OWC is developed using Ansys Fluent. Unlike the previous studies, the developed numerical model has the merit of being validated against a relatively large scale physical model (1:15). The results of the model are compared by those obtained in experimental campaign conducted by the authors. Results of both free surface elevation and air pressure in the OWC chamber are compared. Generally, the results showed an admissible accordance between numerical and experimental model. Some discrepancies could be detected in the free surface elevation in the chamber especially for short wave period. This can be attributed to the increase of nonlinear effects in the chamber by increase of wave steepness. The developed model can be applied for further researches on OWCs such as optimization or improving OWC performance.
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