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Effect of frequency alteration regimes on the heating patterns in a solid-state-fed microwave cavity

机译:频率变化方式对固态微波腔中加热方式的影响

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High-power solid-state sources are expected to be the core elements in efficient controlling characteristics of microwave thermal processing. In this paper, we analyze the effect made by frequency alteration within the 2.4-2.5GHz ISM band on the patterns of dissipated power density in the processed material. A dual-source rectangular cavity loaded by a rectangular block characterized by different dielectric properties is considered. Two regimes of alteration involving equidistant and resonant frequencies are examined using an finite-difference time-domain model validated against theoretical data on eigen frequencies and corresponding eigen fields. The resulting heating patterns generated after a full cycle of alteration are qualitatively analyzed as superpositions of contributions by the distributions at different frequencies. It is shown that both regimes are capable of effectively mixing up the diverse heating patterns and thus produce more uniform distributions of dissipated power. Alteration over resonant frequencies appears to have the potential for leading to more energy-efficient processes.
机译:高功率固态源有望成为有效控制微波热处理特性的核心要素。在本文中,我们分析了2.4-2.5GHz ISM频段内的频率变化对加工材料中耗散功率密度模式的影响。考虑了由具有不同介电特性的矩形块加载的双源矩形腔。使用有限差分时域模型检查了两种等距的变化模式,包括等距和共振频率,该模型针对本征频率和相应本征场的理论数据进行了验证。定性地分析了整个变化周期后产生的最终加热模式,将其作为不同频率下分布的贡献叠加。结果表明,两种方案都能有效地混合各种加热模式,从而产生更均匀的耗散功率分布。谐振频率上的变化似乎有可能导致更节能的过程。

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