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Direct and inverse heat transfer in non-contacting face seals

机译:非接触面密封中的正向和反向传热

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The subject of this paper was to develop a mathematical model of a non-contacting face seal describing the phenomenon of the heat transfer in the system: sealing rings - fluid film. The function of non-contacting face seals used in rotor machines is to separate the working agent from the external environment. The nature of operation of non-contacting face seals allows the fluid to leak through the clearance not bigger than a few micrometres. During the operation of the rotor machine between the co-operating rings, an intense conversion of mechanical energy into heat occurs. At first, the heat flux generated in the fluid film is channelled to the sealing rings and then to the surrounding fluid. The solution of the presented model was conducted with the use of analytical methods for the direct and the inverse heat transfer problem. The distribution of the temperature fields in the sealing rings for the direct heat transfer problem was determined with the use of Fourier-Bessel series as the surface function of two variables (r, θ) for the cross-section of a ring. The inverse heat transfer problem was solved with the use of Trefftz functions. The presented computational methods allow a more detailed identification of the phenomenon of the heat transfer in non-contacting face seals and indicate a direction of further research and preparation of new computational methods.
机译:本文的主题是建立一个非接触式面密封的数学模型,该模型描述系统中的热传递现象:密封环-流体膜。转子机械中使用的非接触式端面密封件的功能是将工作剂与外部环境分开。非接触式面密封件的工作性质允许流体通过不超过几微米的间隙泄漏。在配合环之间的转子电机运行期间,发生了机械能到热量的强烈转化。首先,在流体膜中产生的热通量被引导到密封环,然后被引导到周围的流体。使用解析方法对直接和逆向传热问题进行了所提出模型的求解。通过使用傅里叶-贝塞尔级数作为环的横截面的两个变量(r,θ)的表面函数,确定了直接传热问题在密封环中温度场的分布。通过使用Trefftz函数解决了逆热传递问题。提出的计算方法可以更详细地识别非接触面密封中的传热现象,并为进一步研究和准备新的计算方法指明了方向。

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