와이블 형상계수에 따른 이용률 변화

Variation of Capacity Factors by Weibull Shape Parameters

초록

Effects of Weibull shape parameter, k, on capacity factors of wind turbines were investigated. Wind distributions with mean wind speeds of 5 m/s, 6 m/s, 7 m/s and 8 m/s were simulated and used to estimate the annual energy productions and capacity factors of a 2MW wind turbine for various Weibull shape parameters. It was found from the study that the capacity factors of wind turbines are much affected by Weibull shape parameters. When the annual mean wind speed at the hub height of a wind turbine was about 7 m/s, and the air density was assumed to be 1.225 , the maximum capacity factor of a 2 MW wind turbine having a rated wind speed of 13 m/s was found to occur with the shape parameter of 2. It was also found that as the mean wind speed increased, the Weibull k parameter which yielded the maximum capacity factor increased. The simulated results were also validated by predictions of capacity factors of wind turbines using wind data measured in complex terrain.

키워드

WeibullDistribution(와이블 분포)ShapeParameter(형상계수)ScaleParameter(척도계수)AnnualEnergyProduction(연간에너지 생산량)PowerCurve(성능곡선)CapacityFactor(이용률)
제목
와이블 형상계수에 따른 이용률 변화
제목 (타언어)
Variation of Capacity Factors by Weibull Shape Parameters
저자
권일한유능수백인수김진한
발행일
2013-02
유형
Y
저널명
한국태양에너지학회 논문집
33
1
페이지
32 ~ 39