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Toolkit for computational fluidic simulation and interactive parametrization of segmented flow based fluidic networks

机译:用于基于分段流的流体网络的计算流体仿真和交互式参数化的工具包

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This paper describes a computational approach for system modelling and model based design of microfluidic networks for processing of microsegmented sample streams and its application for modelling of the self-controlled 1:1 fusion of two independently generated sample streams.Liquid/liquid segmented flow based highly integrated lab-on-a-chip devices offer a powerful and versatile approach for high-throughput processing of linearly organized sample streams.Main objectives of this work are the application of principles of electronic design automation(EDA)to the model based design and parametrization of segmented flow based microfluidic networks.This approach will significantly increase the efficiency in development of highly integrated lab-on-a-chip devices for custom fluidic and microchemical protocols.That way,research and development of microchemical and screening applications will benefit from the promising microdroplet based approach of segmented flow.Our computational toolkit is based on a network of fluidic nodes,which are interconnected by virtual fluid pipes for the transfer of segment streams.The particular behaviour of a functional node may be given by user definable rules,which may be derived from experimental data and parameter studies of computational fluid dynamics(CFD)simulations of the functional element.
机译:本文介绍了一种用于处理微分段样品流的微流体网络的系统建模和基于模型的设计的计算方法,以及其在两个独立生成的样品流的自控1:1融合建模中的应用。集成的芯片实验室设备为线性分析的样品流的高通量处理提供了强大而通用的方法。这项工作的主要目标是将电子设计自动化(EDA)原理应用于基于模型的设计和参数化基于分段流的微流体网络。这种方法将显着提高用于定制流体和微化学方案的高度集成的芯片实验室设备的开发效率。这样,微化学的研究和筛选应用将受益于前途基于微滴的分段流方法。我们的计算工具包为ba在由虚拟流体管道互连以传输段流的流体节点网络上。功能节点的特定行为可以由用户定义的规则给出,该规则可以从实验数据和计算流体的参数研究中得出功能元素的动力学(CFD)模拟。

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