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The effect of precipitation rate on the phase shift of the electromagnetic wave due to various types of snow

机译:降雨速率对由于各种类型的雪而引起的电磁波相移的影响

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Using oblate spheroidal representation for snowflakes, the phase shift of the electromagnetic waves due to dry, moist, wet, and watery is computed. The results are obtained for two orthogonal polarizations of the incident wave in the forward-scattering direction. The computations are made for various microwave frequencies between 6 and 100 GHZ, and also for precipitation rates between 0.5 and 3 mm/hr. The effect of the precipitation rate, R, on the phase shift for all types of snow is examined. It is found that at a fixed R, the phase shift of both polarizations for each type of snow increases with increasing frequency up to a value, Fmax, beyond which the phase shift decreases with increasing frequency. The value of Fmax is different for each type of snow and it increases with increasing wetness of snow. In addition, it is observed that the values of phase shift of wet and watery snow are very close. It is also observed that at a fixed frequency, greater than Fmax, the phase shift for both polarizations decreases with increasing R for each type of snow. In addition, it is found that the phase shift of both polarizations of snow decreases with snow wetness for fixed precipitation rate and frequency. The differential phase shift of all types of snow is also observed to follow the same trend as the phase shift over the same frequency range and precipitation rates.
机译:使用扁球形的雪花表示法,可以计算由于干,湿,湿和水引起的电磁波的相移。对于入射波在前向散射方向上的两个正交极化,获得了结果。计算是针对6至100 GHZ之间的各种微波频率,以及0.5至3 mm / hr之间的降水速率。研究了降水率R对所有类型雪的相移的影响。可以发现,在固定的R值下,每种雪的两种极化的相移都随着频率的增加而增加,直至达到Fmax值,超过该值时,相移随频率的增加而减小。每种雪的Fmax值都不同,并且随着雪湿度的增加而增加。另外,观察到湿雪和水雪的相移值非常接近。还可以观察到,在固定频率(大于Fmax)下,每种雪的两种极化的相移都随R的增加而减小。此外,发现对于固定的降水速率和频率,雪的两个极化的相移都随着雪的湿度而减小。还观察到所有类型的雪的微分相移都遵循与在相同频率范围和降水速率下相移相同的趋势。

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