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Chemcial Industry and Engineering 2016, Vol. 33 Issue (5) :73-78    DOI: 10.13353/j.issn.1004.9533.20141132
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Fluid-Structure Interaction Theorem in Venturi Ejector Reactor for Yellow Phosphorus Purification
Wang Xiaojing, Li Xiaoyue
School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China

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Abstract 

Venturi ejector reactor in yellow phosphorus purification system was analyzed based on the theory of CFD and fluid-structure interaction theorem. The performances of the Venturi ejector reactor with specific operating pressure were investigated by FLUENT with Realizable k-ε turbulent model and Eulerian two-phase model. Results coming from FLUENT were passed to the ANSYS Workbench for the static structural analysis. The numerical simulation results show that there is a trend that diffusion tube will deform to the opposite direction of the suction pipe. The max equivalent elastic strain and equivalent stress appeared inside the nozzle. The nozzle was under tensile stress in the domain of outside of nozzle because of the high-speed flow. The values of stress and strain were at a low level, thus fully meet the structural requirements of working conditions. The results can be used to provide numerical basis for the amplifying design and structural optimal design.

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Wang Xiaojing
Li Xiaoyue
KeywordsCFD simulation;   fluid-structure interaction (FSI);   Venturi ejector reactor;   yellow phosphorus purification;   removing arsenic from yellow phosphorus     
Received 2014-07-18;
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Wang Xiaojing, Li Xiaoyue.Fluid-Structure Interaction Theorem in Venturi Ejector Reactor for Yellow Phosphorus Purification[J]  Chemcial Industry and Engineering, 2016,V33(5): 73-78
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