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On the issue of the installation of the purification degree dependence of polluted spent mineral oil on the hydrocyclone constructive and geometrical parameters

机译:论污染矿物油净化程度依赖于水力旋流器结构和几何参数的问题

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The urgency of the issue is reasoned by the necessity to develop environmentally friendly technologies and engineering tools for cleaning emerged mineral oil from insoluble impurities in order to reuse them in the nodes and auto-tractor equipment systems. Hydrocyclone is one of the simplest and most effective means of cleaning waste oil. In order to determine the possibility of hydrocyclone usage in technological lines for purifying oils, it is necessary to establish the influence of its geometrical parameters on the purification quality of such high-viscosity liquid as emerged mineral oils. The purpose of the article is to study theoretically the cylindro-conical hydrocyclone geometrical parameters influence on the purification degree of emerged high-viscosity mineral oils from insoluble and wear debris. The leading approach to the study of this problem is the consideration of the behavior of a non-soluble particle in an oil stream under the influence of forces acting on it, which allows identifying the geometric and regime parameters of a cylindro-conical hydrocyclon. These parameters have the greatest influence on the oil purification degree. The article presents a theoretical justification for the geometrical parameters influence of a cylindrical-conical hydrocyclone on the emerged oil purification degree, a separation criterion, which allows not only determining the optimal size of a hydrocyclone, but also conducting a comparative assessment of hydrocyclones with different geometric parameters by oil purification efficiency from insolubles. Theoretical researches are aimed at determining the cylindro-conical hydrocyclone geometric parameters, depending on the pollution intensity of the emerged mineral oil and the desired degree of its purification from insolubles.
机译:该问题的紧迫性是通过开发环境友好的技术和工程工具来制造用于从不溶性杂质清洁出现的矿物油的工程工具,以便在节点和自动拖拉机设备系统中重用它们。水力旋流器是清洁废油的最简单和最有效的方法之一。为了确定在净化油的技术线中水力旋流器使用的可能性,有必要建立其几何参数对这种高粘度液体的净化质量的影响,如出现的矿物油。本文的目的是在理论上研究圆柱形水力旋流性几何参数对来自不溶性和磨损碎片的出现的高粘度矿物油的净化程度影响。研究该问题的研究的主要方法是考虑在作用于其上的力的影响下的油流中的非可溶性颗粒的行为,这允许识别圆柱形循环氢环的几何和制度参数。这些参数对油净化程度的影响最大。本文介绍了圆柱形水力旋流器对出现的油净化程度,分离标准的几何参数的理论理由,该分离标准允许不仅确定水力旋流器的最佳尺寸,还可以对不同的氢旋流素进行比较评估从不溶解的油净化效率的几何参数。理论研究旨在确定圆柱形水力旋流器几何参数,这取决于出现的矿物油的污染强度以及从不溶解的纯化程度的净化程度。

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