Headings of the journal
"Educational Resources and Technologies"
All rubrics
Release: 2014-1 (4)
Keywords: forest fires, mathematical modeling, cluster computing systems
Annotation: The problem of the forest fires mathematical models creating on basis of Navier-Stokes equations with using the cluster computing systems and space monitoring data is discussed. The efficiently of the modeling algorithms is examines. The samples of the forest fire dynamics calculation are given.
Approximation of wavelet operator by its hyperfinite analogy
Release: 2014-1 (4)
Keywords: wavelet operator , tabular approximation, hyperfinite operator
Annotation: The article deals with the problem of approximation of wavelet operator by its hyperfinite analogy. This problem is studied by the method of the non-standard analysis. It is proved that the hyperfinite wavelet operator is a bounded operator, its norm is less ore equal to 1 and this operator approximates the continuous wavelet operator.
The Markov model of the process of formation of the blood group of a child in the system AB0
Release: 2014-1 (4)
Keywords: Markov model, A and B antigens, parents’ blood groups combinations, final probability, time of formation, dispersion, average value
Annotation: The article shows the use of the mathematical model in the form of Markov chains to analyze the process of formation of the blood group of a child in the system AB0. Probabilistic dependencies of the final probabilities and time of formation of blood groups on the activity of the antigens A and B are given.
On the existence of a stationary measure for the stochastic system for the quasi-solenoidal lorenz model for a baroclinic atmosphere on a sphere
Release: 2014-1 (4)
Investigation of forced convective heat transfer of nanofluids in a cylindrical tube
Release: 2014-1 (4)
Keywords: heat exchange in liquids, nanoliquid, Grets's task, the self-conjugate operator, own functions, the numerical modeling, the compelled convection
Annotation: In this paper, the heat transfer in liquids and nanofluids in a cylindrical tube is investigated. The exact solution for the temperature of one-component fluid (water) is obtained. Numerical simulation of forced convection of water and water/ nanofluid is performed and the temperature distribution in the tube is found. As a re: sult, the efficiency of heat transfer in water/ nanofluid is investigated depending on nanoparticle concentration and flow ve-locity.