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A comrehensive model study for Flash Nanoprecipitation: computational fluid dynamics, micro- particle image velocimetry, and population balance modeling

机译:闪光纳米沉淀的综合模型研究:计算流体动力学,微粒图像测速和种群平衡模型

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摘要

A model study has been conducted for Flash Nanoprecipitation(FNP)) - a novel approach to produce functional nanoparticles. A mixing study has been conducted in a custom-designed microscale multi-inlet vortex reactor (MIVR) and a scalar mixing model was validated against experimental data. A microPIV experiment was conducted to further validate the turbulent model. A population balance equation (PBE) has been proposed to model the FNP process. It was furthermore, integrated into a computational fluid dynamics (CFD) simulation of to yield conditions comparable to the real experimental settings. In coping with the complicated aggregation model in the CFD code, a new numerical approach, conditional quadrature method of moments (CQMOM), has been proposed, which is capable of solving the multivariate system efficiently and accurately. It is shown that the FNP process is highly influenced by mixing effects in the microreactor and thus coupling CFD with the kinetics model is essential in obtaining valid comparisons with experiments.
机译:已经进行了闪光纳米沉淀(FNP)的模型研究,这是一种生产功能性纳米颗粒的新方法。在定制设计的微型多入口涡旋反应器(MIVR)中进行了混合研究,并针对实验数据验证了标量混合模型。进行了microPIV实验以进一步验证湍流模型。有人提出了人口平衡方程(PBE)来模拟FNP过程。此外,它还被集成到的计算流体动力学(CFD)模拟中,以产生与实际实验设置相当的条件。针对CFD代码中复杂的聚合模型,提出了一种新的数值方法,即矩量的条件正交方法(CQMOM),它能够有效,准确地求解多元系统。结果表明,FNP过程受微反应器混合效应的影响很大,因此将CFD与动力学模型耦合对于获得与实验的有效比较至关重要。

著录项

  • 作者

    Cheng, Janine Chungyin;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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