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ANALYSIS OF OPERATIONAL REGIMES OF A HIGH POWER WATER LOAD

机译:大功率水负荷运行方案分析

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Reflections, electric field and dissipated power of a 915 MHz. water load produced by The Ferrite Company, Inc. are computed by QuickWave-3D for water temperatures from 5 to 60℃. A simple empirical model generalizing experimental data is used for calculating the dielectric constant of fresh tap water at 915 MHz and for different temperatures. The computer model is verified by measurement of reflection's magnitude and phase. The load's power reflection and patterns of electric field and dissipated power are demonstrated to be nearly independent of water temperature. Microwave power is dissipated primarily within the conical part of internal water cavity, and possible shortening of its cylindrical part (by up to 70 mm) is suggested for water temperatures less than 60℃. The computational strategy used for modeling is assessed to be beneficial for analyzing and designing other systems for microwave heating.
机译:915 MHz的反射,电场和耗散功率。 The Ferrite Company,Inc.生产的水负荷是由QuickWave-3D在5至60℃的水温下计算的。一个简单的经验模型可以概括实验数据,用于计算915 MHz和不同温度下的新鲜自来水的介电常数。通过测量反射的幅度和相位来验证计算机模型。负载的功率反射以及电场和耗散功率的模式几乎与水温无关。微波功率主要消散在内部水腔的锥形部分内,对于水温低于60℃的情况,建议将其圆柱形部分缩短(最大70毫米)。评估了用于建模的计算策略,这对于分析和设计其他微波加热系统是有益的。

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