Anomalous propagation and the sinking of the Russian warship Moskva

IF 6.9 1区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES
Lars Norin, Niklas Wellander, Abhay Devasthale
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引用次数: 0

Abstract

Abstract On 13 April 2022, the Russian warship Moskva was hit by two Ukrainian Neptune anti-ship missiles in the Black Sea, leading to its demise. Before launching an anti-ship missile, a target must first be detected and positioned, for example by an accompanying radar system. However, when the missiles hit the Moskva she was well beyond the normal radar horizon of any ground-based radar system, making the ship undetectable under normal circumstances. Using meteorological reanalysis data, we show that at the time of the missile launch the prevailing weather conditions allowed a ground-based radar to detect targets far beyond the normal radar horizon through anomalous propagation conditions. During such conditions, the atmospheric index of refraction decreases rapidly with height, making electromagnetic radiation bend downward to, partly or fully, compensate the curvature of the Earth. The results show that atmospheric conditions must be considered carefully, even during warfare, as their impact on radar wave propagation can be considerable.
异常传播和俄罗斯军舰莫斯科号的沉没
2022年4月13日,俄罗斯“莫斯科”号军舰在黑海被乌克兰两枚“海王星”反舰导弹击中,导致其死亡。在发射反舰导弹之前,目标必须首先被探测和定位,例如由伴随的雷达系统。然而,当导弹击中莫斯科号时,她远远超出了任何地面雷达系统的正常雷达视界,使该舰在正常情况下无法被探测到。利用气象再分析数据,我们表明,在导弹发射时,当时的天气条件允许地面雷达通过异常传播条件探测到远远超出正常雷达视界的目标。在这种情况下,大气折射率随高度迅速下降,使电磁辐射向下弯曲,部分或全部补偿地球的曲率。结果表明,即使在战争期间,也必须仔细考虑大气条件,因为它们对雷达波传播的影响可能相当大。
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来源期刊
CiteScore
9.80
自引率
6.20%
发文量
231
审稿时长
6-12 weeks
期刊介绍: The Bulletin of the American Meteorological Society (BAMS) is the flagship magazine of AMS and publishes articles of interest and significance for the weather, water, and climate community as well as news, editorials, and reviews for AMS members.
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