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Simulation of physical processes in devices with non-magnetic, milk-dispersed secondary part

机译:用非磁性,牛奶分散次级部件的物理过程模拟

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At present, most machine-building enterprises focus on the problem of saving energy resources. The proposed system of air regeneration in industrial premises will allow to keep the air in the room at a comfortable temperature without removing it to the atmosphere. The second problem solved by this system is the prevention of pollutants entering the atmosphere. At the same time, the efficiency of this system is not inferior to analogs, and many of them even surpass. Energy costs are reduced by at least 30% because there is no need to use the system of regeneration of working elements. However, the development of this system requires the solution of a number of problems. One of the main problems is the control of the motion of particles in the corona discharge region. A number of differently directed forces act on a particle of a finely dispersed substance, which actually form the equation of motion of this particle. However, when composing the equation of particle motion, it is necessary to take into account the space charge in the outer region of the corona. With a fairly complex geometry of the core, it is impossible to take into account the influence of a volumetric charge analytically, and, consequently, the use of computer modeling tools is required. Another factor that needs to be taken into account is the appearance of an aerodynamic force arising from such a poorly understood phenomenon as the “ion wind” that appears in the presence of a corona discharge. The solution of the described problem will allow to create a system of air regeneration in industrial premises, allowing recirculation of polluted air without diversion into the atmosphere, which will reduce the cost of energy.
机译:目前,大多数机器建筑企业专注于节约能源资源的问题。在工业场所的建议的空气再生系统将允许将空气保持在舒适的温度下,而不会将其移除到大气中。该系统解决的第二个问题是预防进入大气的污染物。与此同时,该系统的效率不逊色于类似物,其中许多甚至超越。能源成本降低至少30%,因为不需要使用工作元素的再生系统。但是,该系统的发展需要解决一些问题。主要问题之一是控制粒子在电晕放电区域中的运动。许多不同定向的力作用于精细分散的物质的颗粒,其实际上形成了该颗粒的运动方程。然而,当构成粒子运动的等式时,有必要考虑电晕外部区域中的空间电荷。具有相当复杂的核心几何形状,无法考虑体积电荷的影响分析,因此,需要使用计算机建模工具。需要考虑的另一个因素是由于在存在电晕放电存在下出现的“离子风”而产生的空气动力学的外观。所描述的问题的解决方案允许在工业处所中创建空气再生系统,允许在没有转移到大气中的情况下污染的空气再循环,这将降低能量成本。

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