Wang Zheng1; Mao Zaisha1; Yang Chao1; Shen Xiangqian2
Source Publicationchinesejournalofchemicalengineering
AbstractThe effect of mixing on the precipitation of barium sulfate in a continuous stirred tank is simulated numerically with different feeding location, feed concentration, impeller speed and residence time through solving the standard momentum and mass transport equations in combination with the moment equations for crystal population balance. The numerical method was validated with the literature data. The simulation results including the distribution of the local supersaturation ratio distribution in the precipitator, mean crystal size and coefficient of variation under different operating conditions compared well with experimental data in the literature. The effect of the presence of a draft tube on precipitation were also investigated, and it is suggested that the installation of a draft tube increased the mean crystal size, in general agreement with experimental work in the literature.
Document Type期刊论文
2.Changsha Research Institute of Mining and Metallurgy
First Author Affilication中国科学院过程工程研究所
Recommended Citation
GB/T 7714
Wang Zheng,Mao Zaisha,Yang Chao,et al. computationalfluiddynamicsapproachtotheeffectofmixinganddrafttubeontheprecipitationofbariumsulfateinacontinuousstirredtank[J]. chinesejournalofchemicalengineering,2006,14(6):713.
APA Wang Zheng,Mao Zaisha,Yang Chao,&Shen Xiangqian.(2006).computationalfluiddynamicsapproachtotheeffectofmixinganddrafttubeontheprecipitationofbariumsulfateinacontinuousstirredtank.chinesejournalofchemicalengineering,14(6),713.
MLA Wang Zheng,et al."computationalfluiddynamicsapproachtotheeffectofmixinganddrafttubeontheprecipitationofbariumsulfateinacontinuousstirredtank".chinesejournalofchemicalengineering 14.6(2006):713.
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