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Design of the Quasi-Optical Transmission Line for Millimeter Wave Deep Drilling

机译:毫米波深钻拟电气输电线路设计

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A 45GHz quasi-optical transmission line with three quasioptical mirrors for millimeter wave deep drilling is designed and experimental tested. Based on the technique of Gaussian beam transformation, the proposed optical transmission line, which consists of three mirrors, is investigated and optimized by vector analysis of the fields on mirror surfaces. The synthesis method has been verified to transfer the electromagnetic wave from the MOU to the specified position of the sample to be heat. The numerical results show that the power transmission efficiency is over 95%. The experimental results demonstrate the output pattern at the position of rock is a good agreement with the desired fundamental Gaussian mode and the output power density of 1.65 $kW/cm^{2}$ at the heated rock surface meets the preliminary requirements to melt the rock.
机译:设计了45GHz准光传输线,具有三个用于毫米波深钻孔的三个弧形镜的测试测试。 基于高斯光束变换技术,通过镜面上的田地的矢量分析来研究和优化由三个镜子组成的所提出的光传输线。 已经验证了合成方法以将来自MOU的电磁波转移到样品的指定位置是热的。 数值结果表明,电力传输效率超过95%。 实验结果表明,岩石位置的输出图案是与所需的基本高斯模式的良好一致性,加热岩石表面上的1.65美元kW / cm ^ {2} $的输出功率密度符合熔化的初步要求 岩石。

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