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Advance optical fiber probe for simultaneous measurements of solids holdup and particles velocity using simple calibration methods for gas-solid fluidization systems

机译:使用简单的校准方法对气固化系统的简单校准方法提前光纤探头,同时测量固体储存和颗粒速度

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摘要

Advanced gas-solid optical fiber probe technique that can measure simultaneously solids velocity, solids concentration related quantity, and their time series fluctuations has been implemented with simple and new calibration methods for both solids holdup and particles velocity measurements in gas-solid spouted bed and gassolid fluidized bed. The needed signal and data processing programs have been developed in our laboratory. New, simple, and reliable calibration methods and the related experimental setups have been established to convert the solids concentration related signal to solids holdup which is a meaningful hydrodynamic parameter and to determine the effective distance between the two tips of the probe for the solids velocity measurements. The new calibration methods have been employed to cover a wide range of particle sizes which usually used in gas-solid spouted beds and gas-solid fluidized beds. Selected results have demonstrated the appropriateness of the advanced optical fiber in measuring both solids holdup and particles velocity in the experimental setups of the gas-solid spouted and fluidized beds. The measurements have been compared against independent techniques of gamma ray computed tomography (CT) and radioactive particle tracking (RPT).
机译:先进的气体固体光纤探针技术可以同时测量固体速度,固体浓度相关数量,以及它们的时间序列波动已经用简单和新的校准方法来实现,用于固体升温床和Gassolid的固体保持和粒子速度测量流化床。我们的实验室已经开发了所需的信号和数据处理程序。已经建立了新的,简单和可靠的校准方法和相关的实验设置,以将固体浓度相关信号转换为固体保持,这是一个有意义的流体动力学参数,并确定固体速度测量探头的两个尖端之间的有效距离。已经采用新的校准方法来覆盖通常用于气固喷射床和气体固体流化床的各种颗粒尺寸。所选结果表明了先进的光纤在气固喷出和流化床的实验设置中测量固体保持和粒子速度的适当性。将测量与伽马射线计算机断层扫描(CT)和放射性粒子跟踪(RPT)的独立技术进行比较。

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