Voronezh, Voronezh, Russian Federation
Russian Federation
Russian Federation
Voronezh, Voronezh, Russian Federation
Voronezh, Russian Federation
Russian Federation
UDK 630 Лесное хозяйство. Лесоводство
An analysis of literary sources showed that the issues of substantiating the parameters of conical augers for supplying soil to the throwing rotors have not been sufficiently studied. The purpose of the study is to predict changes in the kinematic and dynamic parameters of a new design of a rotary auger soil thrower based on the author’s methodology using Fredholm operators. In the developed mathematical model of the working process of a new design of auger soil thrower, an equation of this type is called unresolved with respect to the highest (second) derivative. If the operator is irreversible, then the Cauchy problem does not have a solution for all initial values. Thanks to the Fredholm property, it is possible to apply the cascade decomposition method, which consists in decomposing a given differential equation and conditions into corresponding equations and conditions in subspaces of decreasing dimensions. The dependences of the sought functions and their derivatives in the form of cubic polynomials are obtained. Using a computer program, graphs of the functions of the rotation angle of the rotary auger thrower, the pressure of the working fluid in the hydraulic drive and the path of movement of the forest fire unit were constructed. Using a mathematical model, it is possible to establish optimal parameters and operating modes to increase the efficiency of the working process of a rotary auger forest fire soil thrower when preventing and eliminating forest fires.
screw-rotor primer, hydraulic drive, thrower, soil, mathematical model, forecasting, workflow\
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