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一种用于估算微流体孔隙网络渗透率的半实验方法。

A semi-experimental procedure for the estimation of permeability of microfluidic pore network.

作者信息

Pradhan Sushobhan, Shaik Imran, Lagraauw Rudy, Bikkina Prem

机构信息

Oklahoma State University, Stillwater, OK, USA.

Micronit Microtechnologies, Enschede, Netherlands.

出版信息

MethodsX. 2019 Apr 2;6:704-713. doi: 10.1016/j.mex.2019.03.025. eCollection 2019.

Abstract

Microfluidic porous media systems are used for various applications ranging from chemical molecule detection to enhanced oil recovery studies. Absolute permeability data of the microfluidic porous media are important for those applications. However, it is a significant challenge to measure the permeability due to the difficulty in accurately measuring the ultra-low pressure drop across the pore network. This article presents a semi-experimental procedure to estimate the permeability of a microfluidic pore network. The total pressure drop across the porous media chip (ΔP) at a given flow rate of a single-phase liquid was obtained from the difference in the inlet pressures at the microfluidic pump with and without the pore network chip connected. The pressure drops in the inlet (ΔP) and outlet (ΔP) channels of the pore network are estimated using the hydraulic resistance equation for Poiseuille flow in a wide rectangular cross section. Then the pressure drop across the pore network of the chip (ΔP) is obtained by subtracting (ΔP + ΔP) from ΔP. Subsequently the permeability of the pore network is calculated using the Darcy's law. •The proposed method is applicable for both homogenous and heterogeneous pore networks.•This method does not require a differential pressure sensor across the microfluidic chip.•This method eliminates the possibility of gas entrapment that can affect the permeability measurement.

摘要

微流控多孔介质系统用于从化学分子检测到强化采油研究等各种应用。微流控多孔介质的绝对渗透率数据对这些应用很重要。然而,由于难以精确测量跨孔网络的超低压力降,测量渗透率是一项重大挑战。本文提出了一种半实验程序来估算微流控孔网络的渗透率。在单相液体给定流速下,多孔介质芯片两端的总压力降(ΔP)通过连接和不连接孔网络芯片时微流控泵入口压力的差值获得。孔网络入口(ΔP)和出口(ΔP)通道的压力降使用宽矩形横截面中泊肃叶流的水力阻力方程估算。然后通过从ΔP中减去(ΔP + ΔP)得到芯片孔网络两端的压力降(ΔP)。随后使用达西定律计算孔网络的渗透率。•所提出的方法适用于均匀和非均匀孔网络。•该方法不需要微流控芯片两端的差压传感器。•该方法消除了可能影响渗透率测量的气体截留的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4819/6584494/9561ba3ef281/fx1.jpg

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