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Tunable single mode resonant cavity suitable for continuous flow microwave processing of liquids

机译:可调谐单模谐振腔,适用于液体的连续流微波处理

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In this paper, the design and realisation of a single mode cylindrical resonant cavity suitable for continuous flow microwave processing of liquids is presented. The applicator utilizes a slightly perturbed TM010 mode and the processed liquid flows through a Teflon tube of helix form placed in the applicator. The orientation of the tube within the applicator is mainly perpendicular to the electric field of the excited electromagnetic mode and, therefore, the resonance frequency of the cavity varies only slightly with the material properties of the processed liquid. This geometry furthermore allows fine-tuning of the cavity (shift of the resonance frequency about up to about 30 MHz) using a dielectric low loss cylinder (tuning element) in the axis of the cavity. Furthermore, an applicator-specific automatic tuner of simple construction and low cost was constructed to keep the applied microwave power constant during the processing of the liquid (independent of possible changes of the liquid material properties) as a function of temperature.
机译:本文提出了适用于液体连续流微波处理的单模圆柱谐振腔的设计与实现。施加器采用了一种稍微扰动的TM 010 模式,处理后的液体流经放置在施加器中的螺旋形的特氟隆管。管在施加器内的定向主要垂直于激发电磁模式的电场,因此,腔体的共振频率仅随处理液体的材料特性而略有变化。这种几何形状还允许使用电介质低损耗圆柱体(调谐元件)在腔体的轴上对腔体进行微调(共振频率的偏移大约高达30 MHz)。此外,构造了一种构造简单且成本低廉的专用于涂敷器的自动调谐器,以在液体处理期间保持所施加的微波功率恒定(与液体材料特性的可能变化无关)作为温度的函数。

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