Underwater radiated noise characteristic of the hydro-spinna tidal turbine under induced cavitation

R. Rosli, Weichao Shi, B. Aktas, R. Norman, M. Atlar
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Abstract

Over the past decade, the development of marine current turbines has progressed rapidly with prototypes and fullscale devices being deployed in the actual environment. With research focusing on the hydrodynamic and design aspects of the technologies used, little is known of the impact of marine current turbine operation on marine life and the environment. This paper looks at the Underwater Radiated Noise (URN) produced from the operation of the Hydro-Spinna turbine which is a horizontal-axis type concept design under development at Newcastle University. URN measurements were taken from a 280 mm diameter Hydro-Spinna model. The URN measurement was part of a comprehensive investigation conducted on the turbine model, where the local pressure in the tunnel was reduced to induce cavitation to study its characteristics. The noise data was found to correspond to the cavitation observation where the noise increases as more cavitation developed. In addition, only tip vortex cavitation was observed during the investigation indicating that this is the only cavitation characteristic of the Hydro-Spinna turbine. As more tip vortex cavitation was observed, the URN results exhibit an apparent trend, whereby the sound pressure level (SPL) increased and the frequency shifted towards the lower frequency region.
诱导空化作用下水力旋流式潮汐水轮机水下辐射噪声特性
在过去的十年中,海流涡轮机的发展取得了迅速的进展,样机和全尺寸装置已在实际环境中部署。由于研究主要集中在所使用技术的流体力学和设计方面,因此人们对海流涡轮机运行对海洋生物和环境的影响知之甚少。本文研究了纽卡斯尔大学(Newcastle University)正在开发的水轮旋水轮机(hydro - spin turbine)的水平轴型概念设计所产生的水下辐射噪声(URN)。骨密度测量取自直径280毫米的Hydro-Spinna模型。URN测量是对涡轮模型进行综合研究的一部分,通过降低隧道局部压力诱导空化来研究其特性。发现噪声数据与空化观测相对应,其中随着空化的发展,噪声增加。此外,在研究过程中只观察到叶顶涡空化现象,表明这是水力旋涡涡轮的唯一空化特征。随着叶尖涡空化现象的增多,URN结果呈现出明显的声压级(SPL)增大、频率向低频区移动的趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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