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NUMERICAL ANALYSIS OF THE FLUID-DYNAMIC BEHAVIOR OF A SUBMERGED PLATE WAVE ENERGY CONVERTER

机译:沉入式平板波能量转换器的流体动力特性数值分析

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The need for clean and renewable energy sources has nowadays contributed to give relevance to the study of sea wave energy. In this context, the present work brings a computational modeling to analyze the fluid-dynamic behavior of a submerged plate wave energy converter. Basically, its operating principle consists in the passage of sea waves through a horizontal submerged plate, generating a flow under it where a turbine is placed, converting mechanical energy into electrical energy. The numerical model uses the software GAMBIT and FLUENT. In the latter, which is based on the finite volume method (FVM), the methodology used to represent the air-water interaction in the numerical simulations of the device is the multiphase volume of fluid (VOF) method. The objective of this paper is to analyze the influence of the opening ratio under the submerged plate with regard to its efficiency. To do so, the model, after verification and validation processes, was used in six simulations that differ from each other only in the vertical position of the plate in a wave tank. Results showed that a 5% increase in the opening ratio may produce an approximately 93% increase in the efficiency of the converter. In addition, a physical restriction was inserted under the plate, representing the pressure drop caused by a turbine, and other cases were simulated. These results indicate that a reduction of around 76% in the free region under the plate causes a decrease of only 5.5% in the submerged plate efficiency.
机译:如今,对清洁和可再生能源的需求促进了对海浪能源研究的重视。在这种情况下,本工作带来了一个计算模型来分析潜水板波能量转换器的流体动力学行为。基本上,其工作原理是海浪穿过水平的浸没板,在其下方产生水流,并在水流下放置涡轮,将机械能转化为电能。数值模型使用软件GAMBIT和FLUENT。在后者中,它基于有限体积法(FVM),在设备的数值模拟中用来表示气水相互作用的方法是流体的多相体积(VOF)方法。本文的目的是分析浸没板下开口率对其效率的影响。为此,经过验证和确认过程后,该模型被用于六个模拟中,这些模拟仅在波箱中的板的垂直位置彼此不同。结果表明,打开率增加5%可以使转换器的效率提高约93%。此外,在板下插入了一个物理限制,以表示由涡轮机引起的压降,并模拟了其他情况。这些结果表明,板下方自由区域的降低约76%,导致浸没板效率仅降低5.5%。

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