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Design of yaw brake system for horizontal axis wind turbine generator

机译:水平轴风力发电机的偏航制动系统设计

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摘要

The present study discussed pertinent design parameters used in designing the yaw brake system of horizontal axis wind turbine. The hydraulic power unit of yaw brake system should be designed properly to control the yaw brake during yaw movement of nacelle and to activate the brake calipers when necessary during turbine operation and maintenance work. System design requirements of hydraulic power unit are presented according to IEC 61400-1 and GL Wind guidelines. To understand the arrangement of hydraulic power unit components, three (3) different hydraulic circuit models for yaw brake systems were evaluated. Each configuration of hydraulic power unit for yaw brake system was analyzed by determining the pump performance characteristics using HyPneu software. The simulation results identified hydraulic circuit model with the most controlled system pressure environment, with properly regulated flow rate and best pumping efficiency of 72.03%.
机译:本研究讨论了用于设计水平轴风力发电机的偏航制动系统的相关设计参数。偏航制动系统的液压动力单元的设计应适当,以在机舱偏航运动期间控制偏航制动器,并在涡轮机运行和维护工作期间在必要时激活制动钳。根据IEC 61400-1和GL Wind准则提出了液压动力装置的系统设计要求。为了了解液压动力单元组件的布置,对偏航制动系统的三(3)种不同液压回路模型进行了评估。通过使用HyPneu软件确定泵的性能特征,分析了偏航制动系统液压动力单元的每种配置。仿真结果确定了液压回路模型,该液压回路模型具有最大的系统压力环境,适当调节的流量和最佳抽油效率,为72.03%。

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