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首页> 外文期刊>Bulletin of the Institute of Heat Engineering >A mathematical analysis of two dimensional steady state heat conduction in the coil of an induction heater using finite element method
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A mathematical analysis of two dimensional steady state heat conduction in the coil of an induction heater using finite element method

机译:感应加热线圈二维稳态热传导的有限元数学分析

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In developing heaters typically an induction heater within specific temperature limits can be a key issue impacting the efficiency of the overall policy, as the typical loading of an induction heater is costly. Mathematical modelling is highly useful in terms of estimating the rise in temperature and in shedding light on the wider processes. The projected model might in addition reduce computing prices. The paper develops a 2-Dimensional (2-D) steady state thermal model in polar co-ordinates by means of finite element formulation and arch shaped components. A temperature time methodology is utilized to calculate the distribution of loss in various elements of the induction heater and used as input for finite element analysis. Additional precise temperature distributions are obtained. The projected model is applied to predict the temperature rise within the coil of the induction heater 3200 W totally encircled fan-cooled induction heater. The temperature distribution was determined considering convection from the outer air gap surface and circular finish surface for each entirely encircled and semi encircled structures.
机译:在开发加热器时,通常在特定温度范围内的感应加热器可能是影响整个策略效率的关键问题,因为感应加热器的典型负载非常昂贵。数学模型在估计温度升高和减少更广泛过程的辐射方面非常有用。预计的模型还可以降低计算价格。本文通过有限元公式化和拱形构件,在极坐标中建立了二维(2-D)稳态热模型。利用温度时间方法来计算感应加热器各个元件中的损耗分布,并将其用作有限元分析的输入。获得了额外的精确温度分布。应用该投影模型来预测感应加热器3200 W完全环绕的风扇冷却感应加热器的线圈内的温度升高。对于每个完全环绕和半环绕的结构,考虑到来自外部气隙表面和圆形精加工表面的对流来确定温度分布。

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