Microfluidic Flow Sensing Approaches

Liji Huang
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引用次数: 6

Abstract

Precise flow metrology has an increasing demand in many microfluidic related applications. At the scale and scope of interests, Capillary number instead of Reynold number defines the flow characteristics. The interactions between fluid medium and flow channel surface or the surface tension, cavitation, dissolution, and others play critical roles in microfluidic flow metrology. Conventional flow measurement approaches are not sufficient for solving these issues. This chapter will review the currently available products on the market, their microfluidic flow sensing technologies, the technologies with research and development, the major factors impacting flow metrology, and the prospective sensing approaches for future microfluidic flow sensing.
微流体流量传感方法
在许多与微流体相关的应用中,精确流量计量的需求越来越大。在利益的尺度和范围上,定义流动特性的是毛细管数而不是雷诺数。流体介质与流道表面的相互作用或表面张力、空化、溶解等在微流体流量测量中起着至关重要的作用。传统的流量测量方法不足以解决这些问题。本章将对目前市场上的微流控流量传感产品、微流控流量传感技术、正在研究和开发的技术、影响流量计量的主要因素以及未来微流控流量传感的发展方向进行综述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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