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A Review of Experimental Techniques for Measuring Micro- to Nano-Particle-Laden Gas Flows

机译:测量从微颗粒到纳米颗粒的气体流量的实验技术综述

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Dispersed micro- to nano-particle-laden gas flows are common in many engineering and environmental applications. Characterizing both their dispersed and carrier phase using experimental methods is very important for determining their properties and behavior. This paper reviews techniques for measuring the carrier phase, as well as the dispersed particles ranging from the micro- to the nano-scale. We focus not only on the developments of specific techniques over the last 20 years, but also on relationships and comparisons among these techniques. In addition to a systematic description and classification of these methods, we discuss the parameters they measure, such as particle velocity, size, composition and concentration. A more detailed review is provided for several important measurement techniques, including particle image velocimetry, the phase-Doppler particle analyzer and light-scattering intensity measurements for microparticles, as well as the scanning mobility particle sizer, the fast mobility particle sizer and the electrical low pressure impactor for nano-particles. The founding principles, development histories, various applications of these techniques and where they are going are summarized. This article provides a resource for investigators that plan to study micro- or nano-particle-laden gas flows in various contexts.
机译:在许多工程和环境应用中,分散的载有微米到纳米颗粒的气流很常见。使用实验方法表征它们的分散相和载体相对于确定其性质和行为非常重要。本文综述了用于测量载体相以及从微米级到纳米级的分散颗粒的技术。我们不仅关注过去20年中特定技术的发展,还关注这些技术之间的关系和比较。除了对这些方法的系统描述和分类之外,我们还将讨论它们所测量的参数,例如粒子速度,大小,组成和浓度。对几种重要的测量技术进行了更详细的介绍,包括颗粒图像测速仪,相位多普勒颗粒分析仪和对微粒的光散射强度测量,以及扫描迁移率粒度仪,快速迁移率粒度仪和低电导率仪。纳米颗粒的压力冲击器。总结了这些技术的创立原理,发展历史,各种应用及其发展方向。本文为计划在各种情况下研究载有微米或纳米颗粒的气流的研究人员提供了资源。

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