Theoretical substantiation of the design parameters of the rotating reflective cone of the sprinkler nozzle, providing increased wind resistance of rain

A. Kravchuk, D. A. Rusinov
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Abstract

The article deals with the theoretical question of substantiating the design parameters of a rotating deflector cone providing the creation of a rain cloud with increased wind resistance. The optimal geometric parameters of the rotating deflector cone are determined. The results of laboratory studies are presented, during which the effect of changing the angle of departure of a raindrop descending from a rotating deflector cone on the amount of rain loss on evaporation and wind drift, as well as the irrigation radius, was investigated. It has been found that the use of sprinkler nozzles with a rotating deflector cone can increase the wind resistance of the rain created while maintaining the irrigation radius and reduce water loss by evaporation up to 9.8% compared with rain nozzles with a non-rotating smooth deflector cone.
对喷头旋转反射锥的设计参数进行了理论论证,提高了喷头的抗风抗雨能力
本文讨论的理论问题是,如何确定一个旋转偏转锥的设计参数,从而产生一个风阻增大的雨云。确定了旋转导偏锥的最优几何参数。本文给出了室内试验的结果,研究了改变雨滴从旋转导风锥落下的出发角对蒸发、风漂的雨损失量以及灌溉半径的影响。研究发现,与非旋转光滑导流锥雨水喷头相比,使用旋转导流锥雨水喷头可以在保持灌溉半径的同时增加雨水的风阻,减少蒸发水分损失达9.8%。
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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