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Temperature Distribution Analysis of a Switched Reluctance Linear Launcher

机译:开关磁阻线性发射器的温度分布分析

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A thermal model of a switched reluctance linear launcher is presented in this paper. The accuracy of the thermal model is verified by comparing experimental data with those results derived from finite-element method simulation. The temperature distribution of a switched reluctance linear launcher is derived based on the stator copper losses as the main heat power with measured stator winding current by the current sensor. The maximum temperature rise curves under different ambient temperature and different heat power of winding A are studied. The heat dissipation power of four air convection surfaces under different ambient temperature and the different heat power of winding A is also studied. Furthermore, this paper achieves optimization in thickness of the stator plate and in adding fins to the stator plate for heat dissipation with the present model. It is shown that the stator plate is the maximum heat dissipation power surface so that it can be adopted as the main heat dissipation channel and the effect of heat dissipation is obvious by adding fins to the stator plate.
机译:本文介绍了一种开关磁阻线性发射器的热模型。通过将实验数据与有限元方法仿真得出的结果进行比较,可以验证热模型的准确性。开关磁阻线性发射器的温度分布基于定子铜损作为主要热功率,并通过电流传感器测量定子绕组电流得出。研究了不同环境温度和绕组A不同热功率下的最大温升曲线。还研究了四个空气对流表面在不同环境温度下的散热功率以及绕组A的不同热功率。此外,本文通过本模型实现了定子板厚度的优化以及在定子板上增加散热片的散热。结果表明,定子板是最大的散热功率面,因此可以作为主要散热通道,通过在定子板上增加散热片,散热效果明显。

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