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Analysis of a mooring line with a power cable for a marine current turbine

机译:船用涡轮用电力电缆的系泊线分析。

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Ocean current power is focused on one of big marine renewable energy resources. To take advantage of the current, two floating type marine current turbines i.e. the contra-rotating system and the twin-turbine system are proposed. It is important to investigate about the mooring system combined with the power cable to establish floating type marine current turbines in deepwater. In this concept, a power cable is connected to the floating turbine along with a mooring line. This paper presents bending radius of a power cable and analysis of a mooring line equipped with a power cable. In the experiment, hydrodynamic forces on the mooring line are measured in the circular tank with two polyvinyl chloride pipes modeling a power cable and a mooring line for variation of current velocity and distance between two pipes. The lumped-mass method taking in experimental date into account is used for simulation of tension variation of a mooring line and a power cable. Results show that if the interval of adjacent two pinned connections is kept at a certain value, the required minimum bending radius is satisfied. It is also found that influence of power cable on the mooring line is small.
机译:洋流动力集中于大型海洋可再生能源之一。为了利用该电流,提出了两个浮置式船用涡轮机,即对转系统和双涡轮机系统。对系泊系统与电力电缆的结合进行研究以在深水中建立浮式海流涡轮机至关重要。在此概念中,电力电缆与系泊缆线连接到浮动涡轮机。本文介绍了电力电缆的弯曲半径,并分析了配备电力电缆的系泊缆。在实验中,在圆形储罐中使用两条聚氯乙烯管(分别模拟电力电缆和一条用于改变两条管之间的电流速度和距离的系泊线)测量圆形罐上的水动力。考虑到实验数据的集总质量方法用于模拟系泊缆和电缆的张力变化。结果表明,如果相邻两个销钉连接的间隔保持在某个值,则可以满足所需的最小弯曲半径。还发现电力电缆对系泊缆的影响很小。

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