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Theoretical analysis of the microwave-drill near-field localized heating effect

机译:微波钻头近场局部加热效应的理论分析

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摘要

The microwave-drill principle [Jerby et al., Science 298, 587 (2002)] is based on a localized hot-spot effect induced by a near-field coaxial applicator. The microwave drill melts the nonmetallic material locally and penetrates mechanically into it to shape the hole. This paper presents a theoretical analysis of the thermal-runaway effect induced in front of the microwave drill. The model couples the Maxwell's and heat equations including the material's temperature-dependent properties. A finite-difference time-domain algorithm is applied in a two-time-scale numerical model. The simulation is demonstrated for mullite, and benchmarked in simplified cases. The results show a temperature rise of ~10~3 K/s up to 1300 K within a hot spot confined to a ~4-mm width (~0.1 wavelength). The input-port response to this near-field effect is modeled by equivalent time-varying lumped-circuit elements. Besides the physical insight, this theoretical study provides computational tools for design and analysis of microwave drills and for their real-time monitoring and adaptive impedance matching.
机译:微波钻孔原理[Jerby et al。,Science 298,587(2002)]是基于近场同轴施加器引起的局部热点效应。微波钻机会局部熔化非金属材料,然后机械渗透到其中以形成孔。本文对微波钻头前面引起的热失控效应进行了理论分析。该模型将麦克斯韦方程和热方程耦合在一起,包括材料的温度相关特性。在两个时间尺度的数值模型中应用了时域有限差分算法。该仿真针对莫来石进行了演示,并在简化案例中进行了基准测试。结果表明,在一个热点范围内,温度限制在一个〜4 mm的宽度(〜0.1个波长)内,以每秒10〜3 K / s的速度上升到1300K。通过等效的时变集总电路元件来模拟对这种近场效应的输入端口响应。除了物理洞察力之外,这项理论研究还为微波钻的设计和分析以及它们的实时监控和自适应阻抗匹配提供了计算工具。

著录项

  • 来源
    《Journal of Applied Physics》 |2005年第3期|p.034909.1-034909.7|共7页
  • 作者单位

    Faculty of Engineering, Tel Aviv University, Ramat Aviv 69978, Israel;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用物理学;
  • 关键词

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