But the load calculation and intensity analysis are very important basic work for HAWT design.
而载荷计算和强度分析对于风力机的设计来说是非常重要的基础性工作。
In this paper, the experimental study of static and dynamic testing technologies for a horizontal axis wind turbine (HAWT) blade has been conducted.
该文对影响水平轴风力机气动弹性稳定性的物理机理进行了分析,对国内外的研究方法进行了阐述。
The simplest model of a horizontal axis wind turbine (HAWT) is one in which the turbine rotor is replaced by an actuator disk which removes energy from the wind.
水平轴风力涡轮机(HAWT)的最简单模型是:其涡轮机转子由从风力中获取能量的促动盘代替。
The main objective of this paper is to investigate the horizontal-axis wind turbine (HAWT) rotors, which are optimized to produce the largest possible power output.
为保证风力机具有最大的风能利用系数,本文主要对水平轴风力机风轮的设计和优化方法进行了研究。
An experimental investigation into the properties of the wake behind a horizontal-axis wind turbine (HAWT) rotor is carried out at model scale, using a single slanted hot-wire probe.
在水平轴风力机模型不同尖速比条件下,利用旋转单斜丝热线在风轮下游进行尾迹流场速度测量。

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