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Optimizing microwave transmission into a water-filled high-pressure reactor

机译:优化微波向充满水的高压反应器中的传输

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Microwave energy transmission from a coaxial line into a water-filled high-pressure reactor through a sapphire window is investigated numerically at 2.45 GHz. The FDTD method is implemented in cylindrical co-ordinates to compute the normalized electric field along the coaxial line and to extract reflection coefficients. The magnitude of reflection coefficient |Γ| measured for a window of diameter 25.4 mm and thickness 6.35 mm is 0.7268 for water at 25°C. This parameter is reduced to a minimum value of 0.5627 using a movable PTFE sliding slug inside the coaxial feed. A parametric study of the effect of varying window diameter or window thickness on |Γ| is also undertaken. The results obtained indicate that the return loss from the reactor is minimized when the window diameter is 23 mm and that it falls slowly with decrease in window thickness.
机译:从同轴线通过蓝宝石窗口到充满水的高压反应器中的微波能量传输在2.45 GHz上进行了数值研究。 FDTD方法在圆柱坐标系中实现,以计算沿同轴线的归一化电场并提取反射系数。反射系数的大小|Γ|对于25°C的水,直径25.4毫米,厚度6.35毫米的窗口的测量值为0.7268。使用同轴进料内部的可移动PTFE滑动块将这个参数减小到最小值0.5627。对窗口直径或窗口厚度的变化对|Γ|影响的参数研究也进行。所获得的结果表明,当窗口直径为23 mm时,反应器的回波损耗最小,并且随着窗口厚度的减小,它会缓慢下降。

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