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An Experimental Study on Wave Forces and Pressures on an Oscillating Water Column Under Random Waves

机译:随机波浪作用下振荡水柱上波浪力和压力的实验研究

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A partially submerged device, known as the Oscillating Water Column (OWC) device made up of a chamber with a bottom opening and air trapped at the top, can harness the wave energy. The studies on an OWC wave energy converter widely pertain to the optimization of its geometries to enhance the wave power absorption. On the other hand, limited studies deal with its survivability against wave conditions. For that purpose, a detailed experimental investigation is taken up to understand the nature and magnitude of dynamic pressures on the individual components and the total dynamic forces on the OWC device subjected to random wave incidence. A Froude scale of 1:12 is chosen for studying shoreward and seaward wave load distribution on the OWC device in terms of the non- dimensional pressure on the seaside of the front wall, rear wall pressure, air pressure, and the total horizontal and vertical wave forces. In general, force measurement increases with wavelength. In structural design of the lip wall of OWC device, the seaward exerted pressure should be considered as a critical parameter, since, it governs its stability against being pulled out towards the seaside. The ratio of total horizontal to vertical wave force is vary between 2.5 to 3. It is found that the neighborhood of the natural frequency of the system around d/Lp = 0.131, the measured wave force on the energy device is smaller due to high wave energy absorption.
机译:一种被称为“振荡水塔”(OWC)的部分浸入式设备可以利用波能,该设备由一个带有底部开口的腔室和顶部被捕集的空气组成。 OWC波能转换器的研究广泛涉及优化其几何形状以增强波功率吸收。另一方面,有限的研究涉及其在波浪条件下的生存能力。为此,需要进行详细的实验研究,以了解各个组件上动压力的性质和大小以及OWC装置上受到随机波入射的总动压力。选择Froude比例为1:12,以根据前壁海边的无量纲压力,后壁压力,空气压力以及总的水平和垂直方向来研究OWC设备上的向岸和向海波浪载荷分布波浪力。通常,力的测量随着波长的增加而增加。在OWC装置的唇壁的结构设计中,应将向海施加的压力视为一个关键参数,因为它控制着其稳定性,以防被拉向海边。水平和垂直波力之比在2.5到3之间变化。发现系统的固有频率在d / Lp = 0.131附近,由于高波,在能量装置上测得的波力较小能量吸收。

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