Temperature Distribution Inside the Liquid Inclusion in the Field of the External Temperature Gradient

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The paper is devoted to the analytical dependence of the temperature gradient inside a liquid inclusion in a single crystal of halite on the gradient of the external temperature field. The corresponding formula was obtained for ellipsoidal inclusions. According to this expression, the temperature gradient inside the inclusion depends on the ratio of the sides (axes) of the inclusion, the thermal conductivity coefficients of the inclusion and the medium, as well as the external temperature gradient. The results obtained by the formula were compared with the previously known results and with the results of numerical calculation of the thermal conductivity equation in a three-dimensional formulation for different values of the ratio of the inclusion axes. The best accordance of the calculation results according to the obtained dependence with the results of the numerical solution of the heat equation is shown. A good coincidence of the results of numerical and analytical calculations allows us to use the obtained analytical expression for the temperature gradient in the inclusion of an ellipsoidal shape in order to further construct the theory of thermomigration of liquid inclusions.

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作者简介

O. Korchagina

Nuclear Safety Institute of the Russian Academy of Sciences

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Email: ok@ibrae.ac.ru
俄罗斯联邦, Moscow

参考

  1. Anthony T. R. and Cline H. E. Thermal Migration of Liquid Droplets through Solids. Journal of Applied Physics 1971. V. 42. Р. 3380–3387.
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  3. Гегузин Я. Е., Дзюба А. С., Кружанов В. С. Исследование поведения жидких включений в кристалле в поле температурного градиента // Кристаллография. 1975. Т. 20. Вып. 2. С. 383–390.
  4. Thomas H. Pigford, Migration of Brine Inclusions in Salt. Nuclear Technology. 1982. V. 56. № 1. Р. 93–101.
  5. Ландау Л. Д., Лифшиц Е. М. Теоретическая физика VIII том. Электродинамика сплошных сред.
  6. Carlsaw H. R., Jaeger J. C. Conduction of Heat in Solids. 1959. Oxford university press.

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2. Fig. 1. The section of the ¼ ellipsoid in the OZ plane

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3. Fig. 2. Dependences of the temperature gradient inside the inclusion on the aspect ratio for the formulas (1), (2), (9) and numerical calculation (curves 1, 2, 4 and 3, respectively)

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