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Optimization design of prestressed concrete wind-turbine tower 被引量:7

Optimization design of prestressed concrete wind-turbine tower
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摘要 Wind energy is a clean and renewable energy for which technology has developed rapidly in recent years.Wind turbines are commonly supported on tubular steel towers.As the turbine size is growing and the towers are rising in height,steel towers are required to be sufficiently strong and stiff,consequently leading to high construction costs.To tackle this problem,a new type of prestressed concrete tower was designed employing a novel tower concept having a regular octagon cross section with interior ribs on each side,which was optimized by comparing the natural frequency and stress difference under the same lateral load in different directions of the tower.The designed tower features a tapered profile that reduces the area subjected to wind;the tapered profile reduces the total weight,applied moment and the capital cost.An optimization method was developed employing ABAQUS software and a genetic algorithm.A target function was defined on the basis of the minimum cost of the concrete and prestressed tendon used,and constraints were applied by accounting for the stress,displacements and natural frequency of the tower.Employing the method,a 100 m prestressed concrete tower system for a 5 MW turbine was optimized and designed under wind and earthquake loads.The paper also reports a systematic design procedure incorporating the finite element method and the optimization method for the prestressed concrete wind-turbine towers. Wind energy is a clean and renewable energy for which technology has developed rapidly in recent years. Wind turbines are commonly supported on tubular steel towers. As the turbine size is growing and the towers are rising in height, steel towers are required to be sufficiently strong and stiff, consequently leading to high construction costs. To tackle this problem, a new type of prestressed concrete tower was designed employing a novel tower concept having a regular octagon cross section with inte- rior ribs on each side, which was optimized by comparing the natural frequency and stress difference under the same lateral load in different directions of the tower. The designed tower features a tapered profile that reduces the area subjected to wind; the tapered profile reduces the total weight, applied moment and the capital cost. An optimization method was developed em- ploying ABAQUS software and a genetic algorithm. A target function was defined on the basis of the minimum cost of the concrete and prestressed tendon used, and constraints were applied by accounting for the stress, displacements and natural fre- quency of the tower. Employing the method, a 100 m prestressed concrete tower system for a 5 MW turbine was optimized and designed under wind and earthquake loads. The paper also reports a systematic design procedure incorporating the finite ele- ment method and the optimization method for the prestressed concrete wind-turbine towers.
出处 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第2期414-422,共9页 中国科学(技术科学英文版)
基金 supported by the National Natural Science Foundation of China(Grant No.51078231)
关键词 预应力混凝土 风力涡轮机 优化设计 钢管塔 ABAQUS软件 水平荷载作用 混凝土塔 可再生能源 prestressed concrete wind-turbine tower, optimization, finite element method, genetic algorithm
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