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The Effects Of A Thin Liquid Layer On The Hydrodynamic Machine Rotor

Authors: Krutil, Jaroslav; František Pochylý; Fialová, Simona; Habán, Vladimír;

The Effects Of A Thin Liquid Layer On The Hydrodynamic Machine Rotor

Abstract

{"references": ["A. Zagoru\u013ako, K. Gerasimiva, and E. Altuncev, \"\u010cislennyj analiz\n\u0161\u010delevych uplotn\u011bnnij\", 12th International Scientific and Engineering\nconference (HERVICON 2008), Kielce-Przemysl, 9-12.September 2008.\npp. 105-113, ISSN 1897-2683.", "T. Staubi, and M. Bissing, \"Numerically calculated rotor dynamic\ncoefficients of a pump rotor side space\", Int. Symp. On Stability Control\nof Rotating Machinery (ISCORMA), South Lake Tahoe, August 2001.", "C. Z. Kundera, A. Korczak, A. Zahorulko, K. Gerasimiva, and M.\nPlykin, \"Numerical simulations of short and long annular seals\", Zeszyty\nNaukowy Politechniki \u0160wietokrzyskiej, serija Budowa I Eksploatacja\nMaszyn, Kielce, 2007. No.7, C.77-8.", "F. Pochyl\u00fd, J. Krutil, \"Hydrodynamic effects of the sealing gap\",\nResearch Report number VUT-EU QR-33-13, Brno university of\ntechnology, 2013.", "J. Krutil, F. Pochyl\u00fd, S. Fialov\u00e1, \"Matrices of additional effects of the\nhydrophilic sealing gap of the hydrodynamic machine\", Riadenie\ntekutinov\u00fdch syst\u00e9mov XIV. International scientific and technical\nconference \u2013 Tre\u010dianske Teplice, SK, 2014. pp. 88-91, ISSN 978-80-\n970897-8-8", "M. Athavale, and R. C. Hendricks, \"A small perturbation CFD method\nfor calculation of seal rotordynamics coefficients\", International Journal\nof Machinery, 1996, Vol. 2, No. 3., pp. 167-177.", "Y. Kanemori, and T. Iwatsobo, \"Experimental Study of Dynamics Fluid\nForces and Moments for a Long Annular seals\", ASME Journal of\nTribology, 1992, T.114, Oct., pp. 773-778."]}

A mathematical model of the additional effects of the liquid in the hydrodynamic gap is presented in the paper. An incompressible viscous fluid is considered. Based on computational modeling are determined the matrices of mass, stiffness and damping. The mathematical model is experimentally verified.

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Keywords

matrices of mass, hydrodynamic gap, stiffness and damping., Computational modeling, mathematical model

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