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Measurement of low-altitude infrared propagation

机译:低空红外传播的测量

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摘要

Infrared propagation at low altitudes is determined by extinction that is due to molecules and aerosol particles and ray bending by refraction, three effects that control the mean value of the signal. Interference causes the signal to fluctuate, or scintillate, about the mean value. We discuss the design, calibration, and limitations of a field instrument for measuring optical propagation inside the midwave and long-wave infrared atmospheric windows. The instrument, which is accurate to ±10%, has been used to investigate aerosol, refractive, and scintillation phenomena in the marine boundary layer.
机译:低海拔下的红外传播是由分子和气溶胶颗粒的消光以及折射引起的射线弯曲所决定的,消光是控制信号平均值的三种效应。干扰会导致信号在平均值附近波动或闪烁。我们讨论了用于测量中波和长波红外大气窗口内部的光传播的现场仪器的设计,校准和局限性。该仪器精度为±10%,已用于研究海洋边界层的气溶胶,折射和闪烁现象。

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