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Acoustic sounder applications: remote sensing of sea breeze and radio propagation studies over tropical India

机译:声学探测器应用:热带印度海风和无线电繁殖研究的遥感

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Acoustic sounding is one of the remote sensing techniques that can give continuous information about some of the micro-meteorological parameters of the lower atmosphere. Microwave propagation is strongly influenced by the atmospheric boundary layer where radioclimatological phenomena such as temperature inversions, fronts, and thunderstorms cause steep refractivity gradients. An important parameter in the study of tropospheric propagation is the refractive index which causes reflection, refraction, diffraction and scattering of radio waves. In an effort to identify the causes of fading over LOS microwave links a monostatic sodar was installed at Tirupati (receiving end of the links) to probe the dynamic behavior of lower atmospheric effects on LOS propagation. The observational study has provided some basic understanding of the boundary layer characteristics affecting propagation and benefitted the development of a climatological model. The authors present some observed significant episodes pertinent to the classification of fading characteristics associated with each of the various atmospheric conditions. In addition, possibilities for the causes of fading are also discussed. It is concluded that severe fading in the early morning and late evening hours is caused due to temperature inversions observed over this region.
机译:声学探测是遥感技术之一,可以提供关于较低气氛的一些微气象学参数的持续信息。微波传播受到大气边界层的强烈影响,其中辐射表决性现象如温度逆,前部和雷暴导致陡峭的折射率梯度。对流层传播研究中的一个重要参数是引起无线电波的反射,折射,衍射和散射的折射率。努力识别褪色的原因,微波链路在Tirupati(接收链路的接收端)上安装了单体SODAR,以探测对LOS繁殖的较低大气效应的动态行为。观察性研究为影响传播的边界层特征提供了一些基本的理解,并利益发展气候模型的发展。作者呈现了一些观察到与与各种大气条件相关的衰落特性的分类相关的显着发作。此外,还讨论了褪色原因的可能性。得出结论,恢复早晨和晚傍晚的时间是由于该地区观察到的温度反转引起的。

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