터빈 특성을 고려한 부유식 조류발전장치의 운동성능 고찰

Dynamic Behavior of Floating Tidal Current Power Device Considering Turbine Specifications

초록

Tidal current power is one of the energy sources of the ocean. Electricity can be generated by converting the flow energy of the current into the rotational energy of a turbine. Unlike tidal barrage, tidal current power does not require dams, which have a severe environmental impact. A floating-type tidal current power device can reduce the expensive support and installation cost, which usually account for approximately 41% of the total cost. It can also be deployed in relatively deep water using tensioned wires. The dynamic behavior of a floater and turbine force are coupled because the thrust and moment of the turbine affect the floater excursion, and the motion of the floater can affect the incoming speed of the flow into the turbine. To maximize the power generation and stabilize the system, the coupled motion of the floater and turbine must be extensively analyzed. However, unlike pile-fixed devices, there have been few studies involving the motion analysis of a moored-type tidal current power device. In this study, the commercial program OrcaFlex 10.1a was used for a time domain motion analysis. In addition, in-house code was used for an iterative calculation to solve the coupled problems. As a result, it was found that the maximum mooring load of 200 kN and the floater excursion of 5.5 m were increased by the turbine effect. The load that occurred on the mooring system satisfied the safety factor of 1.67 suggested by API. The optimum mooring system for the floating tidal current power device was suggested to maximize the power generation and stability of the floater.

키워드

Tidal current power 조류발전Motion analysis 운동해석Mooring design 계류설계Time domain analysis 시간영역 해석Dynamic behavior 동적 거동
제목
터빈 특성을 고려한 부유식 조류발전장치의 운동성능 고찰
제목 (타언어)
Dynamic Behavior of Floating Tidal Current Power Device Considering Turbine Specifications
저자
조철희황수진박홍재김명주
DOI
10.26748/KSOE.2018.32.6.427
발행일
2018-12
유형
Y
저널명
한국해양공학회지
32
6
페이지
427 ~ 432