用于高温流体传感的微波谐振腔流量计的优化设计

Tianyang Fang, J. Saniie, S. Bakhtiari, A. Heifetz
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引用次数: 0

摘要

本文研究了一种用于先进反应堆高温流体传感的微波谐振腔换能器的参数优化问题。圆柱形微波腔流量计是一种利用动流体压力引起的腔壁偏转来测量流体流速的新型传感器。该传感器设计用于在核反应堆的恶劣环境中工作,因为传感器材料对高温、电离辐射和腐蚀具有弹性。决定换能器性能特性的参数包括微波腔的尺寸、腔电磁激励方法和腔材料。我们通过计算机模拟研究换能器的设计,以最大化腔q因子为目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of Microwave Resonant Cavity Flowmeter Design for High Temperature Fluid Sensing Applications
This paper investigates optimization of parameters to enhance performance of a microwave resonant cavity transducer for high temperature fluid flow sensing in advanced reactors. The cylindrical microwave cavity flowmeter is a novel sensor that measures fluid flow velocity through deflection of the cavity wall due to dynamic fluid pressure. This sensor is designed to operate in harsh environments of a nuclear reactor because sensor material is resilient to high temperatures, ionizing radiation, and corrosion. Parameters that determine performance characteristics of the transducer include dimensions of the microwave cavity, cavity electromagnetic excitation method, and cavity material. We investigate transducer design through computer simulations, with the objective of maximizing cavity Q-factor.
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