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A measurement criterion for accurate mass detection using vibrating suspended microchannel resonators

机译:使用振动悬浮微通道谐振器进行精确质量检测的测量标准

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In this paper, a measurement criterion is presented to ensure the accuracy of mass detection using suspended microchannel resonators. The dynamic characteristics of the microchannel resonator with an added suspended particle are investigated to analyze and clarify the measurement principle for mass detection. It indicates that the vibration properties of the suspended particle have a significant effect on the measurement accuracy and the generation of systematic error. The fluid-structure interaction vibration of the particle driven by the resonator is solved by the lattice Boltzmann method integrated with the immersed boundary method. The effects of several important factors, including the particle density, fluid viscosity, and oscillating frequency, are studied and discussed. The results demonstrate that the Reynolds number and the density ratio are the two crucial parameters which affect the measurement accuracy and error generation. As the Reynolds number or the density ratio increases, the measurement precision degrades. Moreover, once the Reynolds number decreases to a critical value, the systematic error of mass detection reduces to zero. The measurement criterion can be taken as the guide to accurately detect the mass of suspended particle in the resonator. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本文中,提出了一种测量标准,以确保使用悬浮的微通道谐振器的质量检测精度。研究了微通道谐振器具有添加悬浮颗粒的动态特性,分析并阐明了质量检测的测量原理。表示悬浮颗粒的振动特性对测量精度和系统误差的产生具有显着影响。由谐振器驱动的颗粒的流体结构相互作用振动通过与浸没边界法集成的晶格Boltzmann方法求解。研究和讨论了几种重要因素的影响,包括颗粒密度,流体粘度和振荡频率。结果表明,雷诺数和密度比是影响测量精度和误差生成的两个关键参数。随着雷诺数或密度比增加,测量精度降低。此外,一旦雷诺数减少到临界值,质量检测的系统误差会降低到零。测量标准可以作为准确地检测谐振器中的悬浮颗粒质量的指导。 (c)2017 Elsevier Ltd.保留所有权利。

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