DETERMINATION OF ORIENTATION PARAMETERS AND AUTOMATIC WIND WHEEL SPEED CONTROL

S. Nurkimbayev, Ivan Shumeiko, Assylbek Kassenov, Galya Itybaeva
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Abstract

The design of the wind wheel and storm protection will help greatly improve the performance and safety of the wind-powered water-lifting unit. This, in turn, will contribute to improving the quality of life of rural residents. The authors of this study developed the design of a wind-powered water-lifting unit. The research aims to develop a wind-powered water-lifting unit with a capacity of up to 2.5 m3/hour, resistant to hurricane gusts of wind, with automatic control of wind wheel speed. The mathematical expressions used consider the force of the airflow and the screen area of the side blade, which takes the plane of the wind wheel out of the wind when it increases to values above the permissible operating wind speed. Numerical methods were used to calculate the forces on the spring returning the wind wheel plane to the initial position at different wind speeds. The dependences of the effect of airflow velocity on the free rotation of the wind wheel, i.e., without its running out of the wind, have been determined.
确定方向参数和自动风轮速度控制
风轮和风雨防护装置的设计将有助于大大提高风力提水装置的性能和安全性。这反过来又有助于提高农村居民的生活质量。本研究的作者开发了风力提水装置的设计。研究旨在开发一种风力提水装置,其提水能力可达 2.5 立方米/小时,可抵御飓风阵风,并可自动控制风轮速度。所使用的数学表达式考虑了气流的作用力和侧叶片的屏蔽面积,当风速增加到超过允许的工作风速时,侧叶片会将风轮的平面带出风外。使用数值方法计算了在不同风速下,使风轮平面返回初始位置的弹簧所受的力。还确定了气流速度对风轮自由旋转(即风轮不脱离风)的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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