Conjugate Heat Transfer in the Interaction of the Viscous Liquid with Technological Elements of Energy Systems in Conditions of their Internal Contour Moving

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The paper presents the numerical research of conjugate heat exchange and hydrodynamics in the motion of viscous fluid in the technological elements of energy systems (cavities) in the consideration of its damage. The hydrodynamic figure of the motion viscous fluid and its temperature fields for solid and fluid phases obtained. The model parameters influence on the motion of the heat carrier and the distribution of temperatures in two phases have been studied. The impact of dynamic parameters and geometrical characteristics for the formation of contours generating craters studied.

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876-880

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September 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] M. Flemings, Solidification Processes. Mir, Moscow, 1977 (in Russian).

Google Scholar

[2] N.N. Rykalin, A.A. Uglov, L.M. Anitschenko, High-Temperature Processes. Thermo-Physical Basis. Nauka, Moscow, 1985 (in Russian).

Google Scholar

[3] A.A. Samarskiy, P.N. Vabishevich, Computational Heat Transfer,. Editorial URSS, Moscow, (2003).

Google Scholar

[4] N.V. Martyushev, E.N. Pashkov, Tribotechnical properties lead bronzes,  Applied Mechanics and Materials. 379 (2013) 87 - 90.

DOI: 10.4028/www.scientific.net/amm.379.87

Google Scholar

[5] N.V. Martyushev, E.N. Pashkov, Bronze sealing rings defects and ways of its elimination,  Applied Mechanics and Materials. 379 (2013) 82 – 86.

DOI: 10.4028/www.scientific.net/amm.379.82

Google Scholar

[6] A.V. Krainov, G.V. Shvalova, Heat Power Engineering Fundamentals: study aid for Universities. Bulletin of Tomsk Polytechnic University, Tomsk, (2011).

Google Scholar

[7] A.I. Batyshev, Crystallization of Metals and Alloys under Pressure, Metalurgiya, 1990 (in Russian).

Google Scholar

[8] E.N. Pashkov, G.R. Zijakaev, M.V. Tsigankova, Differential equations of processes for the hydropuls power mechanism of drill machines, Applied Mechanics and Materials.  379 (2013) 91 - 94.

DOI: 10.4028/www.scientific.net/amm.379.91

Google Scholar

[9] E.N. Tarunin, Computing experiment in problems of free convection, Publishing House of Irkutsk University, Irkutsk, 1990 (in Russian).

Google Scholar