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Advancements in Techniques for Calibration and Characterization of In Situ Optical Particle Measuring Probes, and Applications to the FSSP-100 Probe

机译:原位光学粒子测量探针的校准和表征技术的进展及其在FSSP-100探针中的应用

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摘要

Advancements in techniques for the operational calibration and characterization of instrument performance of the Particle Measuring Systems, Inc. (PMS), forward scattering spectrometer probe (FSSP) and optical array probes (OAPs) are presented, which also can be used for most in situ particle-measuring optical probes on the market. These techniques include the determination of a distortion matrix to correct for instrumental broadening of the measured particle size distribution. A new version of a monodisperse droplet generator is introduced for absolute calibration in the size range between 10 and 100 μm. In addition, a high-speed technique was employed for the determination of airspeed influence on the sample volume and the sizing of particles. The calibration of a PMS FSSP with real water droplets may be significantly different from the usual calibration with glass beads. High-speed measurements simulate particles at speeds of up to about 250 m s~(-1). Particle undersizing and the decrease of the sample volume with increasing airspeed are described. The use of the modular tools, built for this work, is discussed for probe alignment, functionality checks, and general characterization and diagnostics both in laboratory and field environments.
机译:介绍了粒子测量系统公司(PMS),前向散射光谱仪探针(FSSP)和光学阵列探针(OAP)的操作校准和仪器性能表征技术的最新进展,这些技术也可用于大多数现场市场上的颗粒测量光学探头。这些技术包括确定变形矩阵,以校正所测量粒度分布的仪器加宽。引入了新版本的单分散液滴发生器,可在10至100μm的尺寸范围内进行绝对校准。另外,采用高速技术确定空速对样品体积和颗粒尺寸的影响。用真实水滴对PMS FSSP进行的校准可能与使用玻璃珠进行的常规校准有很大不同。高速测量以高达约250 m s〜(-1)的速度模拟粒子。描述了颗粒尺寸不足和随空速增加而减少的样品量。讨论了为此工作而构建的模块化工具的使用,以用于实验室和现场环境中的探针对准,功能检查以及常规表征和诊断。

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