RADIANTS FOR MICROWAVE - CONVECTIVE INSTALLATIONS. SIMULATION RESULTS

Aleksey Vasilev, A. Vasil'ev, Dmitriy A. Budnikov, Yuriy Sobchenko
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Abstract

The studies were carried out to simulate the distribution of the electromagnetic field to assess the efficiency of three types of emitters according to the following parameters: standing wave coefficient, which makes it possible to compare the consistency of emitters; radiation efficiency, showing the amount of energy transferred to the grain layer; microwave field radiation pattern, which allows one to evaluate the uniformity of the field distribution in the grain layer. For evaluation and comparison, three types of waveguides were considered: horn, rectangular with slot emitters; semicircular with slot emitters. The distribution of the electromagnetic field was modeled using the CST Microwave Studio program. The use of horn waveguides in ultra-high-frequency convective installations makes it possible to produce fairly simple devices for grain processing. The standing wave coefficient for the operating frequency in this case is 1.3, with a radiation efficiency of 78 dB. However, they do not ensure uniform distribution of the ultrahigh frequency field at the exit from the waveguide, which affects the efficiency of grain processing. The use of rectangular waveguides 55 mm × 110 mm with slot emitters ensures more uniform radiation of the electromagnetic field across the entire spectrum of wave types. The standing wave ratio is 1.0 and the radiation efficiency is 94.43 dB. However, their use requires additional design developments to ensure the supply of coolant to the processing zone. Semicircular waveguides with slot emitters provide a standing wave ratio of 1.0 over the entire frequency range from 2 to 3 GHz. Radiation efficiency is 94.28 dB. The uniformity of the electromagnetic field distribution along a semicircular waveguide is better than along a rectangular one.
微波对流装置的辐射器。模拟结果
研究模拟了电磁场的分布,以根据以下参数评估三种发射器的效率:驻波系数,可以比较发射器的一致性;辐射效率,显示传输到晶粒层的能量;微波场辐射模式,可以评估晶粒层中场分布的均匀性。为了进行评估和比较,考虑了三种类型的波导:喇叭形波导、带槽发射器的矩形波导和带槽发射器的半圆形波导。电磁场的分布使用 CST Microwave Studio 程序进行建模。在超高频对流装置中使用喇叭形波导,可以制造出相当简单的谷物加工装置。在这种情况下,工作频率的驻波系数为 1.3,辐射效率为 78 dB。不过,这种装置无法确保超高频场在波导出口处的均匀分布,从而影响谷物加工的效率。使用带有槽发射器的 55 毫米 × 110 毫米矩形波导,可确保电磁场在整个波谱中的辐射更加均匀。驻波比为 1.0,辐射效率为 94.43 dB。不过,使用这种波导需要进行额外的设计开发,以确保向加工区提供冷却剂。带槽发射器的半圆形波导在 2 至 3 千兆赫的整个频率范围内驻波比为 1.0。辐射效率为 94.28 dB。沿半圆形波导的电磁场分布均匀性优于沿矩形波导的电磁场分布均匀性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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