Effects of demi-hull separation ratios on motion responses of tidal current turbines-loaded catamaran

IF 0.7 Q4 ENGINEERING, OCEAN Ocean Systems Engineering-An International Journal Pub Date : 2020-03-01 DOI:10.12989/OSE.2020.10.1.087
S. Junianto, M. Mukhtasor, R. Prastianto, C. Jo
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引用次数: 10

Abstract

Catamaran has recently been a choice to support a typical vertical axis turbine in floating tidal current energy conversion system. However, motion responses associated with the catamaran can reduce the turbines efficiency. The possibility to overcome this problem is to change the catamaran parameter by varying and simulating the demi-hull separations to have lower motion responses. This simulation was undertaken by Computational Fluid Dynamic (CFD) using potential flow analysis. Cases of demi-hull separation were considered, with ratios of demi-hull separation (S) to the breadth of demi-hull (B), S⁄B of 3.45, 4.95, 6.45, 7.2 and 7.95. In order to compare to the previous works in the literature, the regular wave was set with wave height of 0.8 m. Furthermore, the analysis was carried out by irregular waves with significant wave height, Hs, of about 0.09 to 1.5 m and the wave period, T, of about 1.5 to 6 s or corresponding to the wave frequency, w, of about 1.1 to 4.2 rad/s. The wave spectrum was derived from the equation of the International Towing Tank Conference (ITTC). For the case of turbines-loaded catamaran under consideration, the new finding is that the least significant amplitude response can be satisfied at the ratio S⁄B of 7.2. This study indicates that selecting a right choice of demi-hull separation ratio could contribute in reducing motion responses of the tidal current turbines-loaded catamaran.
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半船体分离比对潮流涡轮双体船运动响应的影响
近年来,双体船已成为浮式潮流能量转换系统中支撑典型垂直轴水轮机的一种选择。然而,与双体船相关的运动响应会降低涡轮机的效率。克服这一问题的可能性是通过改变和模拟半体分离来改变双体船的参数,以降低运动响应。该模拟由计算流体动力学(CFD)利用势流分析进行。考虑半船体分离的情况,半船体分离(S)与半船体宽度(B)之比,S / B分别为3.45、4.95、6.45、7.2和7.95。为了与文献中以往的工作进行比较,设置规则波,波高为0.8 m。此外,采用显著波高Hs约为0.09 ~ 1.5 m,波周期T约为1.5 ~ 6 s或对应波频w约为1.1 ~ 4.2 rad/s的不规则波进行分析。波浪谱是根据国际拖曳舱会议(ITTC)的方程导出的。对于考虑的装有涡轮的双体船,新的发现是在S / B比为7.2时可以满足最小的显著振幅响应。研究表明,选择正确的半体分离比有助于减小潮流涡轮双体船的运动响应。
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期刊介绍: The OCEAN SYSTEMS ENGINEERING focuses on the new research and development efforts to advance the understanding of sciences and technologies in ocean systems engineering. The main subject of the journal is the multi-disciplinary engineering of ocean systems. Areas covered by the journal include; * Undersea technologies: AUVs, submersible robot, manned/unmanned submersibles, remotely operated underwater vehicle, sensors, instrumentation, measurement, and ocean observing systems; * Ocean systems technologies: ocean structures and structural systems, design and production, ocean process and plant, fatigue, fracture, reliability and risk analysis, dynamics of ocean structure system, probabilistic dynamics analysis, fluid-structure interaction, ship motion and mooring system, and port engineering; * Ocean hydrodynamics and ocean renewable energy, wave mechanics, buoyancy and stability, sloshing, slamming, and seakeeping; * Multi-physics based engineering analysis, design and testing: underwater explosions and their effects on ocean vehicle systems, equipments, and surface ships, survivability and vulnerability, shock, impact and vibration; * Modeling and simulations; * Underwater acoustics technologies.
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