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Global monitoring of fluidized-bed processes by means of microwave cavity resonances

机译:通过微波腔共振对流化床过程进行全局监控

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摘要

We present an electromagnetic measurement system for monitoring of the effective permittivity in closed metal vessels, which are commonly used in the process industry. The measurement system exploits the process vessel as a microwave cavity resonator and the relative change in its complex resonance frequencies is related to the complex effective permittivity inside the vessel. Also, thermal expansion of the process vessel is taken into account and we compensate for its influence on the resonance frequencies by means of a priori information derived from a set of temperature measurements. The sensitivities, that relate the process state to the measured resonance frequencies, are computed by means of a detailed finite element model. The usefulness of the proposed measurement system is successfully demonstrated for a pharmaceutical fluidized-bed process, where the water and solid contents inside the process vessel is of interest.
机译:我们介绍了一种电磁测量系统,用于监视封闭金属容器中的有效介电常数,该容器通常在加工行业中使用。测量系统将处理容器用作微波腔谐振器,并且其复杂谐振频率的相对变化与容器内部的复杂有效介电常数有关。同样,考虑了处理容器的热膨胀,我们通过从一组温度测量值中得出的先验信息来补偿其对共振频率的影响。通过详细的有限元模型来计算将过程状态与测得的共振频率相关的灵敏度。所建议的测量系统的实用性已成功地证明了在制药流化床工艺中的应用,其中处理容器内的水和固体内容物是令人关注的。

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