PURIFICATION OF LIQUIDS IMPURITIES BY ELECTROMAGNETIC INFLUENCE

Oleh Terentiev, Mykhaylo Kudilchak, Natalia Jukova, Stepan Kudilchak
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Abstract

The importance of liquid purification leads to a decrease in the concentration of pollutants mainly in the stream during its use. This paper analyzes the relevance of document verification in accordance with existing legislation. An analysis of actual physical and chemical methods of liquid purification was carried out. The creation of a working chamber for the grouping of impurities for liquid purification is described. The result was achieved by electromagnetic influence on charged impurities. The scientific news of the study of the creation of a paraboloid of rotation of impurities has been created. The principle of operation of the cleaning system is shown on the example of the grouping of oil and water impurities. Research results show the possibility of liquid purification by controlling the trajectory of impurities. The work uses the Dini equation (Italian: Ulisse Dini) to describe the mathematical model of the grouping of impurities. A model of the trajectory of impurities in the LabVIEW shell was created. The possibility of further purification of the liquid by the method of electromagnetic grouping and subsequent removal of impurities from the flow was verified. The study takes place in the installation of inductance coils on the outer surface of the impurity grouping chamber. The trajectory of the movement of impurities in the magnetic field is determined. The electromagnetic influence on the charged impurities changes their trajectory and causes the impurities to move along the Larmor radius. When the magnitude of the electromagnetic field increases, the speed of movement of the impurity increases, and the radius of motion of the impurity decreases. It has been proven that impurities with a lower density are better concentrated in the center of the RKG. The parameters of the coils for creating an electromagnetic field are selected. The model of the rotation of oil impurities in the driver is reproduced on the model. The change in the specific conductivity of the water medium with increasing magnetic field induction was verified. At the first stage, we offer the construction of a stand for further purification of liquid by the method of electromagnetic grouping of impurities. Practical recommendations are given for achieving the efficiency of the electromagnetic method of liquid purification and its reuse.
利用电磁影响净化液体杂质
液体净化的重要性导致在其使用过程中主要在溪流中降低污染物浓度。本文根据现行立法分析了单证核查的相关性。对实际的液体净化的物理和化学方法进行了分析。描述了用于液体净化的杂质分组的工作室的创建。结果是通过电磁对带电杂质的影响而得到的。科学新闻的研究创造了一个抛物面的旋转的杂质已被创造。以油水杂质分组为例,说明了清洗系统的工作原理。研究结果表明,通过控制杂质的运动轨迹实现液体净化的可能性。这项工作使用Dini方程(意大利语:Ulisse Dini)来描述杂质分组的数学模型。建立了杂质在LabVIEW外壳中的运动轨迹模型。通过电磁分组的方法进一步提纯液体并随后从流动中去除杂质的可能性得到了验证。在杂质分组室外表面安装电感线圈进行了研究。确定了杂质在磁场中的运动轨迹。电磁对带电杂质的影响改变了它们的运动轨迹,使杂质沿着拉莫尔半径运动。当电磁场强度增大时,杂质的运动速度增大,杂质的运动半径减小。实验证明,密度较低的杂质较好地集中在RKG的中心。选择用于创建电磁场的线圈参数。在模型上再现驱动器内油杂质旋转的模型。验证了水介质的比电导率随磁场感应强度的增大而变化。在第一阶段,我们提供了一个支架的建设,以进一步净化液体的方法电磁分组杂质。为实现电磁法液体净化的效率及其重复利用提出了实用建议。
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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