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Time-fractional heat transfer equations in modeling of the non-contacting face seals

机译:非接触面密封件建模中的时间分数传热方程

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The paper presents a mathematical model of a heat transfer process for non-contacting face seals. For a slewing ring (rotor), a time fractional Fourier law obtained from fractional calculus was applied. Heat exchange in the stator was described using Laplace's equation. Heat flux generated in the medium layer separating the rings is discharged first to a working ring and the to a surrounding medium. Distribution of temperature fields in sealing rings was determined with the use of analytical methods, using integral transformation method. The fractional heat conduction equation (for the rotor) was considered in the light of the case 0 < α ≤ 2 with the special attention paid to α = 1 for the classical heat conduction equation. The proposed way of solving is very broad and involves many theoretical and practical problems, which were taken into account and described in the work. Finally, numerical results are presented graphically for various values of both operational and geometric parameters and order of fractional derivative.
机译:本文提出了非接触面密封件传热过程的数学模型。对于回转支承(转子),应用从分数演算获得的时间分数傅里叶定律。使用拉普拉斯方程描述了定子中的热交换。在将环分隔开的介质层中产生的热通量首先排放到工作环,再排放到周围的介质。密封环中温度场的分布是采用解析法,积分变换法确定的。考虑到0 <α≤2的情况,考虑了分数导热方程(转子),对于经典的导热方程,要特别注意α= 1。提出的解决方法非常广泛,涉及许多理论和实践问题,这些问题在工作中已得到考虑和描述。最后,以图形方式给出了操作和几何参数的各种值以及分数阶导数的数值结果。

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