300W小型水平轴风力机设计参数的计算过程

T. Tran, Thi-Uyen-Uyen Nguyen
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引用次数: 0

摘要

风力涡轮机是一种充分利用风能的技术,已经取得了许多令人瞩目的成就。特别是,转子叶片被认为是风力涡轮机系统中最重要的部分。它们负责将从风中获得的动能转化为机械能来旋转发电机。涡轮机的电力输出很大程度上取决于这部分。转子的掠叶面积、叶尖速比、叶片数、设计叶型、弦与叶扭角分布、厚度、叶片材质等设计特性对涡轮性能有显著影响。本文的研究对象为小型水平轴风力机,预期设计容量为300w。因此,研究将从设计过程的第一步开始,计算设计并选择一种有效的转子叶片设计,并根据国际标准估计和测试设计的耐久性极限。研究的主要目的是研究、分析风力机转子叶片的气动特性,选择和计算叶片的设计参数,然后在QBlade软件的主要支持下,比较不同设计情况(叶片型线、叶尖速比、雷诺数)的结果,从性能和设计成本两方面选择出最优的设计方案(基于叶素动量理论,考虑尾迹旋转和损失)。本研究将基于IEC61400-2小型风力发电机设计标准,利用QBlade的QFEM工具,找出风力发电机在风荷载作用下转子叶片在简单载荷工况下的可用载荷。使用QBlade的QLLT(非线性升力线模拟)来模拟风力涡轮机在湍流风速场中运行的行为并收集负载估计数据。
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Process for Calculating Design Parameters of a Small Horizontal Axis Wind Turbine of 300W
Wind turbines are the technology that makes good use of wind energy and have achieved many remarkable achievements. In particular, rotor blades are considered the most important part of the wind turbine system. They are responsible for converting the kinetic energy obtained from the wind into mechanical energy to rotate a generator. The electrical power output of the turbine is largely determined by this part. The design features of the rotor such as rotor sweep area, tip speed ratio, number of blades, design blade profiles, chord and blade twist angle distribution, thickness, and blade material will significantly affect turbine performance. In this paper, the research object will be a small horizontal axis wind turbine, with an expected design capacity of 300 W. Thereby, the research will go from the first steps of a design process, calculate the design and select an effective design for the rotor blade, estimate and test the durability limit of the design according to the international standards. The main purpose of the research is to study, analyse aerodynamic characteristics, select and calculate design parameters of wind turbine rotor blades, then compare the results of different design cases (blade profile, tip speed ratio, Reynolds number) to select the most optimal design solution in terms of performance and design cost with the support mainly by QBlade software (based on the blade element momentum theory BEM with wake rotation and loss). Based on the IEC61400-2 design standard for small wind turbines, this research will find out the loads available to a wind turbine in a simple load case for rotor blades under wind load with QBlade's QFEM tool. Use QBlade's QLLT (Nonlinear Lifting Line Simulation) to simulate the behaviour and collect load estimation data of a wind turbine operating in a turbulent wind velocity field.
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