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Model-based design of an ultra high performance concrete support structure for a wind turbine

机译:基于模型的风力涡轮机超高性能混凝土支撑结构设计

摘要

A support tower is the main structure which would support rotor, power transmission and control systems, and elevates the rotating blades above the earth boundary layer. A successful design should ensure safe, efficient and economic design for the whole wind turbine system. It should provide easy construction and easy access for maintenance of the rotor components and sub-components. UHPC materials have been used in various structural applications, such as highway bridge girders. There is no much research about its application in support structures of wind turbines. After meeting the requirements for loads, minimizing cost is the next most important design driver. Here at MIT, Chuang and Professor Ulm developed a new constitutive model for fiber reinforced cementitious composite materials, which is particularly suitable for high performance cementitious composites including UHPC. On the basis of UHPC material model and the load requirements for wind turbines, the objective of this work is to carry out a tentative design of the UHPC support tower for a prototype wind turbine.
机译:支撑塔是支撑转子,动力传输和控制系统,并将旋转叶片提升到地面边界层上方的主要结构。成功的设计应确保整个风力涡轮机系统的安全,高效和经济的设计。它应该为转子部件和子部件的维护提供方便的构造和便捷的维修通道。 UHPC材料已用于各种结构应用中,例如公路桥梁大梁。关于其在风力涡轮机的支撑结构中的应用的研究还很少。在满足负载要求之后,最小化成本是下一个最重要的设计驱动因素。在麻省理工学院,Chuang和Ulm教授在这里开发了一种纤维增强水泥基复合材料的新本构模型,该模型特别适用于包括UHPC在内的高性能水泥基复合材料。根据UHPC材料模型和风力涡轮机的负荷要求,这项工作的目的是对原型风力涡轮机的UHPC支撑塔进行初步设计。

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