STUDY OF THE OPERATION OF A VORTEX PNEUMATIC SPRAYER OF DISINFECTANT LIQUIDS

B. Ivanov, B. Ziganshin, I. Gayfullin, A. Rudakov, Petr Zaycev
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Abstract

The production of high-quality livestock products is achieved not only by breeding productive livestock breeds, but also by observing zootechnical requirements and ensuring sanitary well-being in livestock buildings. To maintain the proper sanitary condition of livestock buildings, modern technologies, technical means and preparations for disinfecting surfaces are used, and non-compliance with the requirements for the operation of technical means and the consumption rates of disinfectant liquids leads to an increase in the resistance of microorganisms to antimicrobial drugs. The effectiveness of disinfection largely depends on the technical capabilities of disinfection units, and to a greater extent on spray devices. Many researchers solve complex problems of optimizing the design and technological parameters of spray devices, thereby improving their spray quality. In this regard, a vortex pneumatic liquid sprayer has been developed to perform various technologies and disinfection modes. The dispersed composition of aerosols of disinfecting liquids was obtained under various operating modes by the proposed design of the sprayer. Based on the experimental data, graphical dependencies are constructed that affect the degree of dispersion of the working pressures of the disinfectant liquid and compressed air in the channels of their supply. The values of flow rates of a vortex pneumatic atomizer during its operation in various modes are obtained. Graphic dependences of the disinfectant liquid flow rate through the sprayer are plotted at different pressure ratios in the media supply channels (disinfectant liquid and compressed air) and the angles between them. Based on the obtained technical characteristics, the rational design parameters of the new design of the vortex pneumatic atomizer were determined, namely, the angle between the pneumatic and liquid inlet channels α=90o, the diameter of the outlet d=2.0 mm.
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旋涡式气动消毒液喷雾机的运行研究
生产高质量畜产品不仅要通过培育高产畜种,还要通过遵守动物技术要求和确保畜舍的卫生条件来实现。为保持畜舍的卫生状况,采用现代表面消毒技术、技术手段和制剂,不符合技术手段的操作要求和消毒液的消耗率,导致微生物对抗菌药物的耐药性增加。消毒效果在很大程度上取决于消毒单位的技术能力,更大程度上取决于喷雾装置。许多研究者解决了喷雾装置设计和工艺参数优化的复杂问题,从而提高了喷雾质量。在这方面,旋涡气动液体喷雾器已被开发,以执行各种技术和消毒模式。通过所设计的喷雾器,得到了不同工作模式下消毒液气溶胶的分散组成。根据实验数据,构建了影响消毒液和压缩空气在其供应通道中工作压力分散程度的图形依赖关系。得到了旋涡式气动雾化器在不同工况下的流量值。在介质供应通道(消毒液和压缩空气)的不同压力比下以及它们之间的夹角下,绘制了通过喷雾器的消毒液流量的图形依赖关系。根据所获得的技术特性,确定了新设计旋涡气动雾化器的合理设计参数,即气动与进液通道夹角α=90°,出口直径d=2.0 mm。
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