The authors investigated the relevance of consequentialism in commercial space exploration as well as in the actively developing space market. The authors conclude that space expansion and colonization of space objects will lead to a revision of the foundational consequentialism provisions. Consequentialism, formed during the history of terrestrial civilization, loses its effectiveness under conditions of space commercialization. The basics of planetary thinking are different from those of cosmic thinking. Therefore, considering the meaning of the terms "cosmic expansion" and "colonization of the cosmos" through the existing theory of consequentialism faces serious contradictions. There is a range of problems that are not explored in modern philosophy and ethics due to the lack of an empirical basis for philosophical analysis.
Expanded feed preparation is carried out on the appropriate high-temperature short-term equipment of the HTST family - expanders, which are able to perform the task of cooking food and feed under high pressure. In addition to the chemical processes that occur during expansion (denaturation of proteins, amino acids, vitamins, starch and enzymes), there is a change in the physical and mechanical properties of feed components and their transformation into expands. From the point of view of process physics, the process of expander formation in the expander is reduced to pressing a mixture of solid (grain components), liquid (in the form of moisture) and gaseous (vapor) phases by a screw working body through a forming nozzle under the action of an external heat source. From the point of view of mathematical description, this process is complex and therefore can be described by computer simulation. Analyzing the capabilities of these software packages for the task of simulating the formation of agglomerates (expanders) in the expander was chosen Star CCM +. The simulation of the process of expanded feed preparation in the software package Star CCM + provides the prerequisites for justifying the range of rational parameters of the expander. The simulation of the expander operation allows to determine as research criteria: the pressure in the cavity between the screw and the cylinder of the expander, the density of the obtained expands, the performance of the expander, the temperature scalar field and the velocity field vector of the multiphase mixture. As research factors should be chosen: the phase ratio of the multiphase mixture, the speed of rotation of the screw, the temperature of the heater, diameter, length and pitch of the screw.
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