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首页> 外文期刊>Pharmaceutical research >Hydrodynamic and species transfer simulations in the USP 4 dissolution apparatus: considerations for dissolution in a low velocity pulsing flow.
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Hydrodynamic and species transfer simulations in the USP 4 dissolution apparatus: considerations for dissolution in a low velocity pulsing flow.

机译:USP 4溶解装置中的流体动力学和物种转移模拟:低速脉冲流动溶解的注意事项。

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PURPOSE: To simulate the hydrodynamics in the flow-through (USP 4) dissolution apparatus and investigate the effects of hydrodynamics on mass transfer in a low velocity pulsing flow. METHODS: Computational fluid dynamics (CFD) was used to simulate the hydrodynamics and mass transfer in pulsing flow. Experimental flow visualisation was used to qualitatively confirm simulated hydrodynamic and mass transfer features. The experimental dissolution rate at 8 ml min(-1) (22.6 mm flow-through cell) was compared to the experimental dissolution rate in a free convection system. RESULTS: Simulations revealed periods of low velocity at all flow rates, evidence of boundary layer separation, and, at higher flow rates, residual fluid motion during zero inlet velocity periods. The simulated diffusion boundary layer thickness varied in certain regions over the course of the pulse. The experimental dissolution rate in the free convection system was faster than that at 8 ml min(-1) in the flow-through apparatus. CONCLUSIONS: A low velocity pulsing flow running counter to gravity inhibited the experimental dissolution rate compared to that in a free convection system. From the CFD simulations generated, simulation of both hydrodynamics and species transfer is recommended to characterise the influence of hydrodynamics on dissolution in a low velocity pulsing flow.
机译:目的:模拟流通(USP 4)溶出装置中的流体动力学,并研究流体动力学对低速脉冲流量的质量传递的影响。方法:计算流体动力学(CFD)用于模拟脉动流动流体动力学和质量传递。实验性流动可视化用于定性地确认模拟的流体动力学和传质特征。将8mL min(-1)(22.6mm流过细胞)的实验溶解速率与自由对流系统中的实验溶解速率进行比较。结果:仿真在所有流量率下显示出低速,边界层分离的证据,并且在零入口速度期间处于较高的流速,剩余流体运动。模拟扩散边界层厚度在脉冲过程中在某些区域中变化。自由对流系统中的实验溶出速率比流通装置中的8mL min(-1)的实验溶解速率更快。结论:与重力相反的低速脉冲流动抑制了与自由对流系统中的实验溶解速率相比。从产生的CFD仿真产生,建议使用流体动力学和物种转移的模拟,以表征流体动力学对低速脉冲流动中溶解的影响。

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