
Industrial pipes are an integral part of the complex structures of enterprises of metallurgical, chemical and other industries from the moment of their advent. Their purpose is to exhaust industrial wastes with residual content of hazardous substances on a considerable height. The paper presents the simulation results of stress-strain state of the tower based on the finite element method. Six different constructive solutions of the tower including options for using polymers are reviewed and analyzed.
TA1001-1280, exhaust tower; stress-strain state; numerical simulation; expenditure of materials; steel; polymers, exhaust tower, Transportation engineering, димова башта; напружено-деформований стан; чисельне моделювання; витрати матеріалів; сталь; полімери, numerical simulation, stress-strain state, дымовая башня; напряжённо-деформированное состояние; численное моделирование; расход материалов; сталь; полимеры, steel, expenditure of materials, polymers
TA1001-1280, exhaust tower; stress-strain state; numerical simulation; expenditure of materials; steel; polymers, exhaust tower, Transportation engineering, димова башта; напружено-деформований стан; чисельне моделювання; витрати матеріалів; сталь; полімери, numerical simulation, stress-strain state, дымовая башня; напряжённо-деформированное состояние; численное моделирование; расход материалов; сталь; полимеры, steel, expenditure of materials, polymers
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