动量分析用于预测层次保留性多孔介质中的有效传输特性
Claudia Venditti1, Bram Huygens2, Gert Desmet2
1Dipartimento di Ingegneria Chimica Materiali Ambiente, Sapienza Università di Roma, Italy.
Journal of chromatography. A
|June 4, 2023
概括
一种新的同质化方法在多孔介质中准确地解决了吸向-扩散方程,改善了对色谱带扩展的理解. 这种高效的方法提供了精确的运输参数和暂时行为分析.
科学领域:
- 多相流的流量是多相的.
- 计算物理学的计算物理.
- 化学工程是化学工程的组成部分.
背景情况:
- 染色学系统表现出带宽,这是由于层次性的多孔介质中的复杂的吸向-扩散过程.
- 局部扩散和吸附/脱附现象进一步使准确的建模复杂化.
- 现有的直接数值模拟 (DNS) 方法是计算密集型的,需要大域.
研究的目的:
- 开发一种新的同质化方法,用于解决层次性多孔介质中的吸向-扩散方程.
- 为了实现运输现象建模的极大提高速度和精度.
- 为了能够更深入地了解染色体系统中的带宽.
主要方法:
- 提出了一种强大而高效的基于时刻的方法.
- 该方法计算了精确的局部和积分度时刻.
- 它需要只在周期性多孔介质的单元细胞上解决依赖时间的吸附-扩散方程.
主要成果:
- 该方法为有效的速度和分散系数提供了准确的解决方案.
- 它为短暂和长期的非对称解决方案提供了准确的有效运输参数.
- 与DNS相比,计算工作量大大减少,精度提高.
结论:
- 新的同质化方法提供了一个高效和准确的解决方案,用于在层次的多孔介质中进行向-扩散.
- 它为短暂的行为和宏观运输条件提供了有价值的见解.
- 通过多维DNS比较证实了该方法的可靠性,包括边界条件对染色学性能的影响.
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