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Surface water vapour density and tropospheric radio refractivity linkage over three stations in Nigeria

机译:尼日利亚三个台站的地表水蒸气密度和对流层无线电折射率链接

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摘要

Relationships of the form Y=α+βX and Y=αXβ (α, β, constants) have been established between radio refractivity aloft and surface water vapour density (SWVD), in g/m3 over three radiosonde stations in Nigeria using an analysis of variance (ANOVA) technique on upper air climatological data spanning over a decade (1975–1990).Owing to the difference in the climatological patterns of precipitation at the three stations viz. Oshodi, a coastal station, Minna, a midland station and Kano located in the sub-sahelian region of Nigeria, different values of α and β have been obtained for the stations at the different atmospheric levels considered.Initial tests carried out on the models using monthly mean data of the soundings made over the region in 1993 gave encouraging results. On applying the Kolmogorov–Smirnov test, the upper-level refractivity (Nu) models for all the stations and the low-level refractivity (NL) model for Minna were found to be adequate during the dry season. During the rainy season, only the Nu models for Oshodi and Kano were found to be adequate, others are inadequate.
机译:在尼日利亚三个无线电探空仪站上,高射电率与地表水蒸气密度(SWVD)之间的关系为Y =α+βX和Y =αXβ(α,β,常数),单位为g / m3。过去十年(1975-1990年)的高空气候数据的方差(ANOVA)技术。由于这三个站的降水气候模式不同。位于尼日利亚撒哈拉以南地区的Oshodi,沿海站,Minna,中地站和Kano,在考虑的不同大气水平下获得了不同的α和β值。使用这些模型对模型进行了初始测试1993年该地区测深的月平均数据给出了令人鼓舞的结果。在进行Kolmogorov–Smirnov检验时,发现在干旱季节,所有站点的高层折射率(Nu)模型和Minna的低层折射率(NL)模型都足够。在雨季,仅发现适用于Oshodi和Kano的Nu模型是合适的,而其他模型则不足。

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