S. Nukeshev, Khozhakeldi Tanbayev, M. Ramaniuk, N. Kakabayev, A. Sugirbay, Aidar Moldazhanov
{"title":"Spray Angle and Uniformity of the Flat Fan Nozzle of Deep Loosener Fertilizer for Intra-Soil Application of Fertilizers","authors":"S. Nukeshev, Khozhakeldi Tanbayev, M. Ramaniuk, N. Kakabayev, A. Sugirbay, Aidar Moldazhanov","doi":"10.3390/agriengineering6020079","DOIUrl":null,"url":null,"abstract":"This paper deals with the problem of predetermining the spray angle and uniformity of the flat fan sprayer with a semicircular impact surface for the intra-soil application of liquid mineral fertilizers. The jet impact on a round splash plate and radial atomization properties are investigated theoretically, the formation features of the spray with an obtuse angle are studied in a geometrical way, and the design search of the nozzle shape and optimization calculations are performed using computational fluid dynamics (CFD) simulations and then verified experimentally. It was revealed that the spray rate and spray angle can be adjusted by changing the parameter s, and when the spray angle is within s = 0–0.2 mm, it forms spray angles with range of 140°–175°. The spraying angle, in turn, shows the potential length of the tillage knife in accordance with the undersoil cavity dimensions. A spray uniformity of up to 74% was achieved, which is sufficient for applied studies and for intra-soil application operations. According to the investigations and field experiments, it can be concluded that the designed nozzle is applicable for the intra-soil application of liquid mineral fertilizers. The use of flat fan nozzles that form a spraying band under the soil cavity and along the entire length of the tillage knife ensures a highly efficient mixing process, the liquid mineral fertilizers with treated soil (particles) positively contributing to plant maturation.","PeriodicalId":7846,"journal":{"name":"AgriEngineering","volume":"15 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-05-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"AgriEngineering","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.3390/agriengineering6020079","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
This paper deals with the problem of predetermining the spray angle and uniformity of the flat fan sprayer with a semicircular impact surface for the intra-soil application of liquid mineral fertilizers. The jet impact on a round splash plate and radial atomization properties are investigated theoretically, the formation features of the spray with an obtuse angle are studied in a geometrical way, and the design search of the nozzle shape and optimization calculations are performed using computational fluid dynamics (CFD) simulations and then verified experimentally. It was revealed that the spray rate and spray angle can be adjusted by changing the parameter s, and when the spray angle is within s = 0–0.2 mm, it forms spray angles with range of 140°–175°. The spraying angle, in turn, shows the potential length of the tillage knife in accordance with the undersoil cavity dimensions. A spray uniformity of up to 74% was achieved, which is sufficient for applied studies and for intra-soil application operations. According to the investigations and field experiments, it can be concluded that the designed nozzle is applicable for the intra-soil application of liquid mineral fertilizers. The use of flat fan nozzles that form a spraying band under the soil cavity and along the entire length of the tillage knife ensures a highly efficient mixing process, the liquid mineral fertilizers with treated soil (particles) positively contributing to plant maturation.
本文论述了用于液体矿物肥料土内施肥的半圆形冲击面平面扇形喷雾器的喷雾角度和均匀性的预定问题。从理论上研究了射流对圆形飞溅板的冲击和径向雾化特性,从几何角度研究了钝角喷雾的形成特征,利用计算流体动力学(CFD)模拟进行了喷嘴形状的设计搜索和优化计算,然后进行了实验验证。结果表明,喷雾速率和喷雾角度可通过改变参数 s 进行调节,当喷雾角度在 s = 0-0.2 mm 范围内时,可形成 140°-175° 的喷雾角度。喷洒角度反过来又显示了耕刀的潜在长度,与土壤下的空腔尺寸一致。喷洒均匀度高达 74%,足以满足应用研究和土内施肥作业的需要。根据调查和田间试验,可以得出结论,所设计的喷嘴适用于液体矿物肥料的土内施肥。使用扁平扇形喷嘴,在土壤空腔下并沿着耕刀的整个长度形成一个喷洒带,确保了高效的混合过程,液体矿物肥料与处理过的土壤(颗粒)积极促进了植物的成熟。