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CFD studies of scraper built in SPA clarifying tank based on mixture solid-liquid two-phase flow model 被引量:1

CFD studies of scraper built in SPA clarifying tank based on mixture solid-liquid two-phase flow model
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摘要 In the industrial process of producing the strong phosphoric acid(SPA),clarification of the solution is essential to the ultimate product.However,the large viscosity of sediment and the induced interface interaction result in difficulties when the SPA is clarified.CFD numerical methodology was applied to simulate internal flow field and performance of the low speed scraper based on Mixture solidliquid two-phase flow model.Sediment deposition was generated by loading solid particles at the bottom of clarifying vessel.The moving mesh and RNG k-εmodel were used to simulate the rotational turbulent flow in clarifying tank.Variables studied,amongst others,were the scraper rotation speed and the mounting height,which could affect the solid suspension height.Features of flow field and solid volume fraction distribution in computational domain were presented and analyzed.The numerical reports of the scraper torque and velocities of inlet and outlet filed were obtained.It seems the torque value of rotatio-nal axis and particle suspending height augment with an increasing rotating speed.Meanwhile,a high revolving speed is good for the deposition discharge.The particle fraction distribution in meridional surface and horizontal surface at fixed rotation speed were analyzed to determine the corresponding optimal installation height.The simulating results reflect the flow field is marginally stirred by the scraper and proper working parameters are obtained,in which case the comprehensive properties of the scraper and the clarifying tank are superior. In the industrial process of producing the strong phosphoric acid(SPA),clarification of the solution is essential to the ultimate product.However,the large viscosity of sediment and the induced interface interaction result in difficulties when the SPA is clarified.CFD numerical methodology was applied to simulate internal flow field and performance of the low speed scraper based on Mixture solidliquid two-phase flow model.Sediment deposition was generated by loading solid particles at the bottom of clarifying vessel.The moving mesh and RNG k-εmodel were used to simulate the rotational turbulent flow in clarifying tank.Variables studied,amongst others,were the scraper rotation speed and the mounting height,which could affect the solid suspension height.Features of flow field and solid volume fraction distribution in computational domain were presented and analyzed.The numerical reports of the scraper torque and velocities of inlet and outlet filed were obtained.It seems the torque value of rotatio-nal axis and particle suspending height augment with an increasing rotating speed.Meanwhile,a high revolving speed is good for the deposition discharge.The particle fraction distribution in meridional surface and horizontal surface at fixed rotation speed were analyzed to determine the corresponding optimal installation height.The simulating results reflect the flow field is marginally stirred by the scraper and proper working parameters are obtained,in which case the comprehensive properties of the scraper and the clarifying tank are superior.
作者 CHEN Yu ZHOU Jianxu ZHANG Zhengyang CHEN Yu,ZHOU Jianxu,ZHANG Zhengyang(College of Water Conservancy and Hydropower Engineering,Hohai University,China Water Resources Beifang Investigation,Design and Research Co.Ltd.,)
出处 《排灌机械工程学报》 EI CSCD 北大核心 2018年第7期553-559,586,共8页 Journal of Drainage and Irrigation Machinery Engineering
基金 Graduate Research and Innovation Program in Jiangsu Province(KYZZ16_0286)
关键词 strong phosphoric acid clarifying TANK SCRAPER MIXTURE TWO-PHASE model GRANULAR SUSPENSION computational fluid dynamics strong phosphoric acid clarifying tank scraper mixture two-phase model granular suspension computational fluid dynamics
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