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Study on contamination characteristics of roof insulators under artificial simulated fog-haze and airflow environment

机译:人工模拟雾霾和气流环境下屋顶绝缘子污染特性研究

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As the environment deteriorates, the frequency of fog-haze weather is getting higher and higher, which greatly affects the normal life of the people and the normal operation of highspeed railway external insulation equipment. The fog-haze is a combination of fog and haze. The haze in the air will affect pollution accumulation of the roof insulator, and the fog in the air which settles on the surface of the roof insulator will make the pollution on the surface of the roof insulator humid. This kind of humid contamination greatly increases the probability of the roof insulator's flashover. The roof insulator, as an important external insulation device for electrified railways, will cause a serious impact on the stable operation of high-speed trains in the event of failure. However, there are few studies on the contamination situation under the fog-haze and airflow environment of the roof insulator. In this paper, the FQJG2-30/16 roof insulator is used as the test object, and the force of the fog-haze particles on the surface of the insulator under the highspeed air smog environment is analyzed. It is believed that the force of the fog-haze particles mainly includes gravity, airflow drag, collision force between particles and friction between the particles and the surface of the insulator, as the same time the water film formed by the water droplets in the haze environment causes the fog-haze particles to settle on the insulator. The adhesion of the surface is increased, leading to more serious surface area contamination of the roof insulator. Based on this, a simulation model of fog-haze particles deposition on the surface of insulators in a high-speed airflow for-haze environment was established. the artificial fog-haze environment was simulated under different airflow speeds by through the artificial climate chamber to study the contamination of the roof insulator. In this paper, (NH4)2SO4 was used to simulate the soluble salt in the haze, and the insoluble matter was simulated by diatomaceous earth. The (NH4)2SO4: diatomaceous earth = 1:6 configuration haze, 0.5 g salt, 3 g ash was selected. The water mist generated by the ultrasonic water mist generator simulates the fog in the fog-haze environment, and the influence of the haze environment on the roof insulator contamination at different airflow speeds is revealed by artificially simulating the airflow haze environment roof insulator contamination test. The simulation and test results show that in the fog-haze environment, there is a difference in surface area contamination of the roof insulator under different airflow speeds. When the air velocity is less than 30m/s, the water droplets are more likely to form a water film on the surface of the roof insulator, so that the fog-haze particles are more likely to adhere to the surface of the insulator, and the insulator surface contamination is continuously reduced as the airflow speed increases, when the airflow speed is greater than 30m/s, the highspeed airflow takes away a large number of water droplets, and the surface of the roof insulator is not easy to form a water film. At this time, the effect of the water droplet adhesion force is reduced, the airflow drag force is greater than the water droplet adhesion force, and the fog-haze particles are more prone to slip on the surface of the insulator. When the airflow sp
机译:随着环境的恶化,雾霾天气的频率越来越高,这极大地影响了人们的正常生活和高速铁路外绝缘设备的正常运行。雾,霾是雾霾天气的组合。在空气中的雾度会影响屋顶绝缘体的污染积累,并在其中沉降的屋顶绝缘体的表面上会使得屋顶绝缘体湿润的表面上的污染的空气中的雾。这种潮湿的污染大大增加了车顶绝缘子的闪络的概率。屋顶绝缘体,作为用于电气化铁路的重要外部绝缘装置,将导致故障的情况下对高速列车的稳定运行造成严重影响。不过,也有对雾霾下的污染状况和车顶绝缘子的气流环境的研究很少。在本文中,所述FQJG2-30 / 16屋顶绝缘体被用作测试对象,而雾霾粒子的绝缘体的表面上的高速空气烟雾环境下的力进行分析。据信,所述雾霾粒子的力主要包括重力,气流阻力,颗粒和绝缘体的表面之间的颗粒和摩擦之间的碰撞力,因为相同的时间雾度由水滴形成的水膜环境使雾霾颗粒在绝缘体上定居。表面的密合性增大,导致屋顶绝缘体的更严重的表面积受到污染。基于此,雾霾颗粒的仿真模型沉积为混浊成立环境中的高速气流绝缘子的表面上。人造雾霾环境的混合物在不同气流的速度模拟由通过人工气候室来研究屋顶绝缘体的污染。在本文中,(NH 4 2 所以 4 用于模拟的可溶性盐的雾度,和不溶性物质通过硅藻土模拟。在(NH 4 2 所以 4 :硅藻土= 1:6配置雾度,将0.5g的盐,被选为3克灰分。由超声波水雾产生器产生的水雾模拟在雾霾环境雾,并在不同的气流速度下的屋顶绝缘体污染雾度环境的影响是通过人为地模拟气流雾度环境屋顶绝缘体污染测试显示。仿真和实验结果表明,在雾霾环境,存在在不同气流速度屋顶绝缘体的表面积污染的差。当空气速度为小于30m / s时,水滴更容易形成屋顶绝缘体的表面上的水膜,从而使雾霾颗粒更容易附着到绝缘体的表面上,和绝缘体表面污染被连续减小的气流速度增加,当气流速度大于30m / s时,高速气流带走大量的水滴,屋顶绝缘体的表面不容易形成水电影。此时,水滴附着力的效果降低,气流阻力比水滴粘合力大,并且雾霾颗粒更容易出现打滑的绝缘体的表面上。当气流SP

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