Author:
Joachimiak Damian,Krzyślak Piotr
Abstract
AbstractThe paper discusses thermodynamic phenomena accompanying the flow of gas in a slotted seal. The analysis of the gas flow has been described based on an irreversible adiabatic transformation. A model based on the equation of total enthalpy balance has been proposed. The iterative process of the model aims at obtaining such a gas temperature distribution that will fulfill the continuity equation. The model allows for dissipation of the kinetic energy into friction heat by making use of the Blasius equation to determine the friction coefficient. Within the works, experimental research has been performed of the gas flow in a slotted seal of slot height 2 mm. Based on the experimental data, the equation of local friction coefficient was modified with a correction parameter. This parameter was described with the function of pressure ratio to obtain a mass flow of the value from the experiment. The reason for taking up of this problem is the absence of high accuracy models for calculating the gas flow in slotted seals. The proposed model allows an accurate determination of the mass flow in a slotted seal based on the geometry and gas initial and final parameters.
Subject
General Physics and Astronomy
Reference8 articles.
1. Investigation and improvement of the staggered labyrinth seal;LinZ;Chin Mech Eng,2015
2. Identification of friction factors for modeling the exciting forces caused by flow in labyrinth seals Springer Verlag;ThiekleG;Rotordynamics,1992
3. Fluid dynamic modeling of a free piston engine with labyrinth seals;LarjolaJ;Int J Therm Sci,2010
4. Comparison of the calculation methods labyrinth seals and determination flow factor on the basis of experimental data , Machinery and equipment power In rd Technical and Scientific Conference in Polish;JoachimiakD;Proc,2013
5. On the pressure loss of flow between rotaring co - axial cylinders with rectangular grooves;YamadaY;Bull JSME,1962
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