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Calculation method of hot spot temperature of isolation switch based on improved heat path model

机译:基于改进热路径模型的隔离开关热点温度计算方法

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The isolation switch is one of the most commonly used high-voltage electrical equipment in the power grid, and its stability and service life directly affect the operation of the power grid. The fast calculation method of the hot spot temperature for isolation switch is an important contents of online monitoring. However, the numerical calculation method of the thermal field distribution commonly used currently has a slow calculation speed, complicated modeling and change calculation conditions, and is difficult to apply. Therefore, this paper proposes an improved method for calculating the hot spot temperature of an isolating switch based on a thermal circuit model, which can better balance the accuracy and calculation speed. This article analyzes the GW16-550 outdoor high-voltage AC isolating switch. The calculation results show that the hot spot is located at the contact point of the contact. Under the rated conditions, the hot spot temperature is about 20 K higher than the ambient temperature. The hot spot temperature decreases with the increase of wind speed, and changes significantly at low wind speeds. Hot spot temperature is directly proportional to ambient temperature and service life. This research provides support for the research of hotspot temperature for isolation switch, and has certain practical value.
机译:隔离开关是电网中最常用的高压电气设备之一,其稳定性和使用寿命直接影响电网的运行。隔离开关热点温度的快速计算方法是在线监测的重要内容。但是,目前常用的热场分布数值计算方法计算速度较慢,建模和变化计算条件复杂,难以应用。因此,本文提出一种改进的基于热电路模型的隔离开关热点温度计算方法,可以更好地平衡精度和计算速度。本文分析了GW16-550室外高压交流隔离开关。计算结果表明,热点位于接触点的接触点。在额定条件下,热点温度比环境温度高约20K。热点温度随着风速的增加而降低,而在低风速下则显着变化。热点温度与环境温度和使用寿命成正比。该研究为隔离开关热点温度的研究提供了支持,具有一定的实用价值。

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