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Design and Analysis of Particulate Matter Air-Microfluidic Grading Chip Based on MEMS

机译:基于MEMS的颗粒物空气微流控分级芯片的设计与分析

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摘要

Atmospheric particulate matter (PM) air-microfluidic grading chip is the premise for realizing high-precision PM online monitoring. It can be used as an indispensable basis for identifying pollution sources and controlling inhalable harmful substances. In this paper, based on aerodynamic theory and COMSOL numerical analysis, a two-stage PM air-microfluidic grading chip with cut-off diameters of 10 μm and 2.5 μm was designed. The effects of chip inlet width (W), main flow width (L), second channel width (S), and split ratio (Q1/Q) on PM classification efficiency were analyzed, and optimized design parameters were achieved. The collection efficiency curves were plotted according to PM separation effects of the chip on various particle sizes (0.5–15 μm). The results indicate that the chip has good separation effect, which provides an efficient structural model for the PM micro-fluidization chip design.
机译:大气颗粒物(PM)空气微流控分级芯片是实现高精度颗粒物在线监测的前提。它可作为识别污染源和控制可吸入有害物质的必不可少的基础。本文基于空气动力学理论和COMSOL数值分析,设计了截断直径分别为10μm和2.5μm的两级PM空气微流体分级芯片。分析了切屑入口宽度(W),主流宽度(L),第二通道宽度(S)和分流比(Q1 / Q)对颗粒物分级效率的影响,并获得了优化的设计参数。收集效率曲线是根据芯片对各种粒径(0.5-15μm)的PM分离效果绘制的。结果表明,该芯片具有良好的分离效果,为PM微流化芯片设计提供了有效的结构模型。

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