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首页> 外文期刊>International Journal of Thermophysics >Microwave-Dimensional Measurements of Cylindrical Resonators for Primary Acoustic Thermometry
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Microwave-Dimensional Measurements of Cylindrical Resonators for Primary Acoustic Thermometry

机译:圆柱谐振器的微波尺寸测量,用于初级声学测温

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Acoustic gas thermometry relies on the fundamental relationship between the speed of sound in a monatomic gas and its thermodynamic temperature. The speed of sound is calculated from the resonance frequencies of a cavity whose dimensions or thermal expansivity must be measured with high accuracy. For quasi-spherical cavities, the use of microwave resonances is a successful and proven dimensional measurement technique. The simplicity and economy of cylindrical resonators makes them an attractive alternative to quasi-spherical resonators, particularly for high-temperature thermometry. This article summarizes the basic theory of cylindrical microwave resonators, and describes methods for obtaining cavity dimensions from the mode frequencies. The perturbing effects of cavity shape deformations, the wall to end-plate junction, coupling probes and non-conducting surface layers are discussed. The results of an experiment with a simple aluminum cavity are presented, which demonstrate the superior performance of the TEOpq modes over the more commonly used TMOpq modes.
机译:声学气体测温法依赖于单原子气体中的声速与其热力学温度之间的基本关系。声速是根据腔体的共振频率计算得出的,腔体的尺寸或热膨胀性必须高精度测量。对于准球形空腔,微波共振的使用是一种成功且成熟的尺寸测量技术。圆柱谐振器的简单性和经济性使其成为准球形谐振器的诱人替代品,特别是对于高温测温法。本文总结了圆柱形微波谐振器的基本原理,并描述了从模频率获得腔尺寸的方法。讨论了空腔形状变形,壁与端板的连接,耦合探针和不导电表面层的扰动效应。给出了使用简单铝腔的实验结果,该结果证明了TEOpq模式优于更常用的TMOpq模式。

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