Methods for Assessing the State of Snow-Ice Cover

V. Mashkov, V. Malyshev, P. Fedyunin
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Abstract

The development new methods for measuring the electrophysical and geometric parameters multilayer dielectric medium in order to identify their layers, as well as to detect inhomogeneities in them, is an urgent scientific task. Methods for assessing the state the snow-ice cover are proposed, based on the identification layers of the snow-ice cover by the dielectric permittivity obtained indirectly as a result inclined sounding of the underlying surface by an electromagnetic wave with vertical and horizontal polarization. Under normal sensing the underlying surface, in the form snow-ice cover, by radio waves with vertical and horizontal polarization, the obtained values the reflection coefficient from the boundary layers the received signals are identical. Oblique sensing by a vertically polarized wave in the range from 25 to 90 degrees leads to a sharp dip in the values the reflection coefficient from the boundary layers at certain angles, so for dry snow – 47…55°, dry firn – 55 … 58° and dry ice – 58…61°. These angles characterize the dielectric properties the layers (permittivity), which are explained by the complete polarization the reflected wave in a plane perpendicular to the plane incidence, since at this moment the vibrations the layer's electrons along the direction their movement do not lead to the emission electromagnetic waves in the direction the reflected wave (absent). The given estimated values the complex relative permittivity snow-ice cover as two component medium air and ice at a temperature from minus one to minus forty degrees, or three component medium air, ice and water at zero temperature are a sample for establishing the identity the characteristic properties layers. The purpose this article is to develop methods for assessing the state snow-ice cover used in determining the possibility performing a safe landing a helicopter – type aircraft on an unprepared site with snow-ice cover based on the identification the obtained characteristics snow-ice cover layers based on the results radar sensing with calculated data
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冰雪覆盖状况的评估方法
开发测量多层介质电物理和几何参数的新方法,以识别其层数,并检测其不均匀性,是一项迫切的科学任务。提出了利用电磁波垂直和水平极化斜探下垫面间接获得的介电常数对积雪层进行识别的积雪状态评估方法。在以冰雪覆盖形式对下垫面进行垂直偏振和水平偏振无线电波正常传感的情况下,得到的边界层反射系数值与接收到的信号是相同的。垂直极化波在25 ~ 90度范围内的斜向传感导致边界层反射系数值在一定角度上急剧下降,因此对于干雪- 47 ~ 55°,干雪- 55 ~ 58°和干冰- 58 ~ 61°。这些角度表征了各层的介电特性(介电常数),这可以用反射波在垂直于平面入射的平面上的完全极化来解释,因为此时,层的电子沿其运动方向的振动不会导致在反射波方向上的发射电磁波(不存在)。给出了在零下1 ~零下40度温度下的双组分介质空气和冰,或在零度温度下的三组分介质空气、冰和水的复杂相对介电常数雪冰盖的估计值,作为建立特征属性层识别的样本。本文的目的是在利用计算数据的雷达传感结果识别所获得的特征积雪层的基础上,开发用于确定直升机型飞机在无准备的积雪覆盖场地安全降落可能性的状态积雪覆盖评估方法
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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