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Numerical and field experimental investigation of wind turbine dynamic de-icing process

机译:风力涡轮机动态去冰工艺的数值和现场实验研究

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摘要

A two-dimensional numerical approach has been proposed in this article to help with the simulation and visualization of dynamic de-icing process, thereby facilitating a better understanding of the pertinent physical phenomena involved in the ice melting process for cold-climate wind turbines. In this method, Reynolds-averaged Navier-Stokes equations and Shear Stress Transport k-omega turbulence model are adopted to calculate the outer fluid velocity field, and a two-step apparent heat capacity method has been employed to simulate the inner phase change. Corresponding field de-icing experiments on a 2 kW wind turbine have been performed at a natural icing station to provide essential parameters and subsequent validation for the simulation. The results show that the simulations are in good consistence with experiments. The relative errors between predicted actuation durations and measured ones are in acceptable range. Through comprehensive analysis of both numerical and experimental results, the wind turbine dynamic de-icing process has been explored. It is revealed that the de-icing process of wind turbine blades is mainly consisted of four distinct periods, i.e. sharp and short temperature-rising period, plateau period, gentle and long temperature-rising period, and fluctuation period (if exists). The mechanism of the generation of each stage has also been elucidated.
机译:本文提出了一种二维数值方法,以帮助有助于动态去结冰过程的模拟和可视化,从而促进更好地了解冷气式风力涡轮机的冰熔过程所涉及的相关物理现象。在该方法中,采用Reynolds-Isperged Navier-Stokes方程和剪切应力传输K-Omega湍流模型来计算外部流体速度场,并且已经采用了两步的表观热容量来模拟内相变化。在自然糖化站执行了2 kW风力涡轮机上的相应现场去冰实验,以提供基本参数和随后进行模拟的验证。结果表明,模拟与实验良好。预测致动持续时间和测量的相对误差是可接受的范围。通过对数值和实验结果的综合分析,探讨了风力涡轮机动态去冰工艺。据透露,风力涡轮机叶片的去冰工艺主要由四个不同的时期组成,即剧烈且短的温度上升期,平台周期,温和和长的温度上升期,波动期(如果存在)。也阐明了每个阶段的产生机制。

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