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蒸发波导条件下风速风向对电磁波传播的影响
Influence of Wind Speed and Wind Direction on Electromagnetic Waves Propagation in Presence of Evaporation Duct
投稿时间:2019-09-04  修订日期:2019-10-08
DOI:
中文关键词:  蒸发波导  风速  风向  海面粗糙度  电磁波传播  影响
英文关键词:Evaporation  Duct, Wind  Speed,Wind  Direction,Sea  Surface Roughness, Electromagnetic  Waves Propagation, Influence
基金项目:
作者单位邮编
姚忠山 海军大连舰艇学院军事海洋与测绘系 大连 116018
焦林* 海军大连舰艇学院军事海洋与测绘系 大连 116018
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中文摘要:
      海洋蒸发波导是重要的军事敏感要素,严重影响着海上电磁波的传播,而风向风速又是决定蒸发波导强弱的重要因素,为精确模拟蒸发波导条件下的电磁波传播,准确评估预报雷达、通信等电子设备的性能,本文利用抛物线方程模型,结合粗糙度参数和蒸发波导条件下大气修正折射指数廓线模型来求解电磁波波动方程,基于电磁波传播的数值模拟结果,重点研究蒸发波导条件下风速和风向对电磁波传播的影响。并最终得到如下结论:在同一传播距离处,风速越大,海面粗糙度越大,海面电磁波传播损耗就越大;当电磁波传播方向与风向夹角为0o时,其传播路径损耗远远大于在45°或90°条件下,即顺风条件下电磁波传播损耗大于侧风。
英文摘要:
      The evaporation duct is an important military sensitive factor at the sea, which affects the propagation of the electromagnetic wave. The wind direction and the wind speed are the important factors that determine the strength of the evaporation duct. In order to simulate the propagation of the electromagnetic wave accurately in the evaporation duct and evaluate the performance of the radar, communication and other electronic equipment, this paper used the Parabolic Equation Method to solve the wave equation above a generated random sea surface which furthermore taking into account the roughness parameter and the atmospheric modified refraction index model under the evaporation duct conditions. Based on the numerical results of the EM wave propagation,this paper deals with the effects of the wind speed and the wind direction on electromagnetic waves propagation in presence of the evaporation duct. And finally gets the following conclusions: at the same propagation distance, the wind speed is higher; the sea surface roughness is bigger, the electromagnetic wave propagation loss is greater. When the angle between the electromagnetic wave propagation direction and wind direction is 0o, the propagation path loss is much greater than 45o and 90o, that is, the propagation loss of the electromagnetic wave under the downwind condition is greater than the crosswind.
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