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Application of Two-Dimensional Temperature Field Distribution Reconstruction in Microwave Heating Environment

机译:二维温度场分布重建在微波加热环境中的应用

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With the growth of the population in the world, energy problem has become a major topic in the world. Energy conservation has become an important part of China's national development strategy. The use of microwave heating instead of traditional heating can greatly improve the utilization rate of energy, and then achieve the goal of energy conservation and emissions reduction. However, due to the uneven heating of microwave heating, it will lead to thermal runaway phenomena, and even more serious explosion accidents. So, In order to use microwave energy efficiently and safely, obtaining the temperature distribution information under the microwave heating environment is significant. Due to the special nature of microwave heating environment, the traditional way of thermometry is not applicable. Ultrasonic thermometry technology can break through the limitation of microwave heating environment. In this paper, the basic principle of ultrasonic thermometry, temperature distribution reconstruction algorithm and physical operation platform are described in details. And then, two key issues of ultrasonic time-of-flight measurement and temperature field reconstruction have been verified on a physical operation platform. With and without the microwave injection, the reconstructed temperature field both shows the effectiveness of the proposed algorithm.
机译:随着世界人口的增长,能源问题已成为世界上的主要课题。节约能源已成为中国国家发展战略的重要组成部分。使用微波加热而不是传统的加热可以大大提高能量的利用率,然后实现节能和减少排放的目标。然而,由于微波炉加热不均匀,它会导致热失控现象,甚至更严重的爆炸事故。因此,为了有效且安全地使用微波能量,获得微波加热环境下的温度分布信息是显着的。由于微波加热环境的特殊性,传统的温度方式不适用。超声波温度技术可突破微波加热环境的限制。本文详细描述了超声波温度,温度分布重建算法和物理运行平台的基本原理。然后,在物理操作平台上验证了超声波飞行时间测量和温度场重建的两个关键问题。在没有微波喷射的情况下,重建的温度场都显示了所提出的算法的有效性。

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