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Closed-loop feedback control of droplet formation in a T-junction microdroplet generator

机译:T型结微滴发生器中液滴形成的闭环反馈控制

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To precisely control the size of monodisperse droplets for droplet microfluidics, we here establish a closed-loop control system with real-time feedback of droplet length during droplet generation. Particularly, the microvalves are integrated into the system to control the flow rates of the two immiscible fluids. From experimental measurements, we observe that the droplet length is a linear function of the flow-rate ratio for low capillary numbers (C-a <= 0.1). More importantly, the coefficients of the linear relation are determined by the geometry of the microchannel, and independent of the viscosity of the fluids. Based on MATLAB Simulink, the deviation between the predicted and measured droplet length is quantitatively studied. By using a PI controller, both the response speed and control accuracy of the droplet length can be greatly improved for the closed-loop control system. As a result, high monodispersity and uniformity of droplet generation can be achieved in a T-junction microdroplet generator. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了精确控制液滴微流体的单分散液滴的大小,我们在这里建立了一个闭环控制系统,该系统在液滴产生过程中实时反馈液滴的长度。特别地,将微型阀集成到系统中以控制两种不混溶流体的流速。从实验测量中,我们观察到对于低毛细管数(C-a <= 0.1),液滴长度是流速比的线性函数。更重要的是,线性关系的系数由微通道的几何形状确定,并且与流体的粘度无关。基于MATLAB Simulink,定量研究了预测液滴长度和测量液滴长度之间的偏差。通过使用PI控制器,对于闭环控制系统,可以极大地提高液滴长度的响应速度和控制精度。结果,在T型结微滴发生器中可以实现高的单分散性和液滴产生的均匀性。 (C)2015 Elsevier B.V.保留所有权利。

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