Solving the Nonstationary Problem of the Disperse Phase Concentration during the Pneumoclassification Process of Mechanical Mixtures

Journal Title: Журнал інженерних наук - Year 2019, Vol 6, Issue 1

Abstract

The article dials with studying of the gas-dispersed systems classification process in gravitation pneumoclassifiers of prismatic shape. The aim of the research is to determine operating parameters of the investigated process. Recent research is based on the previously developed mathematical model of hydrodynamics for a gasdispersed flow in a vertical channel with variable cross-section. As a development of this study, a physical model based on the process of kinetic removal from the mixture was used. This process is caused by the removal of fine particles from the weighed layer in the case of theirs low velocities in comparison with the average gas flow velocity. This model also considers the inertial effect due to the kinetic energy of fine particles removed from the surface of the weighted later. The first order linear nonhomogeneous partial differential equation describing the unsteady process of changing the dispersed phase concentration in the gas-mechanical mixture by channel height was solved by mathematical modeling using the combination of direct and inverse Laplace transforms. As a result, for the first time the general solution was obtained for for non-trivial boundary and initial conditions. This fact allowed developing the mathematical model of the nonstationary problem for the disperse phase concentration during the pneumoclassification process of mechanical mixtures in pneumoclassifiers. The model allows determining the concentration of fine fraction of the gas-dispersed mixture by channel height in operating volume of the device, as well as evaluating time of the pneumoclassification process. Particularly, it was found that the dispersed phase concentration decreases by the height of the apparatus with respect to time. This fact proves the possibility of effective separation of components in gas-mechanical mixtures. Finally, the achieved results allow proposing the engineering technique for calculations of vertial-type gravitation pneumoclassifiers.

Authors and Affiliations

I. V. Pavlenko, M. P. Yukhymenko, A. V. Lytvynenko, J. Bocko

Keywords

Related Articles

Systematic Presentation of Ritz Variational Method for the Flexural Analysis of Simply Supported Rectangular Kirchhoff–Love Plates

In this work, the Ritz variational method for solving the flexural problem of Kirchhoff–Love plates under transverse distributed load has been presented systematically in matrix form. An illustrative application of the m...

The impact of multi-gap seals on rotor dynamics

The research relevance of multi-slotted seals is of practical significance for increasing vibration-reliability of centrifugal pumps. This paper presents the model of a single-disk rotor with seals. The forced radial rot...

Adjusting the size of the rope thread in the machining of dimensional tool

The article considers the possibility of adjustment the geometrical deviations profile rope thread with a large pitch, which appear as a consequence of wear of the cutting tool during machining. Due to the fact that the...

Formation of hydroxyapatite coatings with addition of chitosan from aqueous solutions by thermal substrate method

The aim of this investigation was obtaining of biocompatible coatings for medical implants based on biopolymer chitosan and hydroxyapatite, which is the main mineral component of bone tissue. Coatings were obtained by th...

Overview of Control Techniques for Multicellular Converter

The structure multicellular converters, which appeared at the beginning of the 1990s, makes it possible to share the constraints in tension and it also improves the harmonic contents of the wave forms. To benefit as well...

Download PDF file
  • EP ID EP627788
  • DOI 10.21272/jes.2019.6(1).f1
  • Views 85
  • Downloads 0

How To Cite

I. V. Pavlenko, M. P. Yukhymenko, A. V. Lytvynenko, J. Bocko (2019). Solving the Nonstationary Problem of the Disperse Phase Concentration during the Pneumoclassification Process of Mechanical Mixtures. Журнал інженерних наук, 6(1), 1-5. https://europub.co.uk./articles/-A-627788