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Heat Distribution Pattern of Double Brillouin Pulse Inside Water

机译:水中双布里渊脉冲的热分布图案

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In a dispersive medium excited by a wideband pulse, the appearance of the steady-state part of the propagated signal is preceded by oscillations known as precursors. Precursor fields in lossy Debye media have been shown to present a sub-exponential attenuation rate, thus becoming good candidates for applications requiring field penetration into such media. This paper aims to study the performance of a pulse consisting of two mutually delayed precursors for microwave heating. A comparison between this particular pulse and a general excitation, modulated rectangular pulse, will be presented. Finite difference time domain simulations under a specific algorithm for calculation of temperature distribution pattern of microwave heating are employed to evaluate the performance of precursor-based excitation and to compare it with modulated rectangular pulse.
机译:在由宽带脉冲激发的分散介质中,传播信号的稳态部分的外观先于称为前体的振荡。已经示出了有损Debye介质中的前体领域呈现了子指数衰减率,因此成为需要现场渗透到这种介质的应用的良好候选者。本文旨在研究由两个相互延迟的微波加热组成的脉冲的性能。将呈现该特定脉冲与一般激发,调制矩形脉冲之间的比较。采用有限差分时域模拟用于计算微波加热温度分布图案的算法,评价前体基激励的性能,并将其与调制矩形脉冲进行比较。

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