Modeling of electrodynamic parameters of microwave sterilizer

V. Bayburin, V. Komarov, V. P. Meschanov
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Abstract

For the sterilization of medical instruments, a technology for their immersion heat treatment with intense microwave radiation at the frequency of 2,45 GHz is analyzed. The advantages of this technology in comparison with traditional methods are shown. An electromagnetic model of a microwave sterilizer for surgical tools was built, taking into account the temperature dependence of the complex dielectric permittivity of the immersion medium (water). A rectangular cavity with a waveguide excitation was used as its basic unit. With the help of a numerical model on the finite element method, the values of the reflected and absorbed power, as well as the heating rate of water in the sterilizer for an operating power of 600 W, were determined. The analysis of thermal processes, performed according to a simplified method, showed a rather high efficiency of such device, which provides a high heating rate at a given frequency.
微波灭菌器电动力学参数建模
针对医疗器械的灭菌,分析了一种频率为2,45 GHz的强微波浸没式热处理技术。与传统方法相比,表明了该技术的优越性。考虑浸没介质(水)复介电常数的温度依赖性,建立了手术器械用微波灭菌器的电磁模型。以波导激励的矩形空腔为基本单元。利用有限元方法建立了数值模型,确定了工作功率为600 W时消毒器的反射功率和吸收功率以及水的加热速率。根据一种简化方法对热过程进行了分析,结果表明该装置在给定频率下具有较高的加热速率,效率相当高。
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