会议论文详细信息
3rd International Scientific and Technical Conference “Energy Systems”
Theoretical study of the flow of cement raw material sludge through pipes
Perelygin, D.N.^1 ; Boichuk, I.P.^2 ; Grinek, A.V.^2 ; Kozlov, V.K.^1
Department of Technological Complexes, Machines and Mechanisms, Belgorod State Technological University of V.G. Shukhov, Kostyukov St.46, Belgorod
308012, Russia^1
Department of Ship's Electric and Automatic Devices, Admiral Ushakov Maritime State University, Lenin's avenue, Novorossiysk 93, Krasnodar Krai
353918, Russia^2
关键词: Cement raw materials;    Energy saving methods;    Hydraulic resistances;    Non-Newtonian fluids;    Non-stationary effects;    Physical characteristics;    Physico mechanical characteristics;    Technological equipments;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/552/1/012037/pdf
DOI  :  10.1088/1757-899X/552/1/012037
来源: IOP
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【 摘 要 】

The flow of fluids through pipes directly depends on the physicomechanical characteristics of the material. When designing technological equipment, it is assumed that the equipment operates with the limiting physical characteristics of the liquid. The study of the flow of non-Newtonian fluids is important for the development of energy-saving methods for the cement industry. In this paper, we study the flow of cement raw sludge through rigid pipes. It is shown that when moving in pipes near the pipe walls, the sludge moves like a normal Newtonian liquid, and near the pipe it moves like a solid. This indicates that when moving through a pipe with a prolonged non-stationary effect, the sludge behaves like a normal Bingham body. The article found the flow rate, the drag coefficient, the Reynolds number, and the hydraulic resistance when the sludge moves through the pipe. In this paper, the parametric law of resistance of sludge movement in pipes is defined, which can be considered as a convenient way to calculate pressure drop. It follows from the law that, when flowing through pipes, sludge now acquires the properties of a plastic body and behaves like Bingham plastic.

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