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Variability of Microwave Radio Refractivity and Field Strength over Some Selected Locations in Nigeria

机译:尼日利亚某些特定地点的微波无线电折射率的变化和场强

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In this study, results?of?the?variation?of?radio?field?strength derived from the computation of surface refractivity through measurements of temperature, relative humidity and pressure across seven locations ((Akure (7.15°N, 5.12°E), Lagos (6.30°N, 3.20°E), Abuja (7.10°N, 9.25°E), Jos (9.50°N, 8.50°E), Makurdi (7.30°N, 8.53°E),?Port-Harcourt (4.20°N, 7.00°E),?and?Nsukka (6.90°N, 7.67°E)) in Nigeria are presented. Two years (Jan., 2011–Dec., 2012) archived data as provided by Tropospheric Data Acquisition Network (TRODAN) of the Centre for Atmospheric Research, Anyigba, Kogi State were utilized for the study. Results showed that the values of surface refractivity ( Ns ) were low during the dry season months and high during the wet season months and also there was high values of NS at the coastal areas compared with the inland areas. It was also deduced that the average value of NS for Abuja, Akure, Jos, Lagos, Markurdi, Nsukka and Port-Harcourt is 355, 362, 303, 391, 375, 361 and 399 N-units respectively. Also the average values of Field Strength Variability (FSV) are 30.38, 20.16, 21.39, 24.21, 24.31, 21.49, and 21.48 dB in the respective locations and that the FSV values were high during the dry season months and low during the wet season months. This may be attributed to the prevalence of high temperature during dry season and low temperature during the wet season.
机译:在这项研究中,通过测量七个位置的温度,相对湿度和压力来计算表面折射率,得出了“辐射场强度”变化的结果((Akure(7.15°N,5.12°E) ,拉各斯(6.30°N,3.20°E),阿布贾(7.10°N,9.25°E),乔斯(9.50°N,8.50°E),马库尔迪(7.30°N,8.53°E),哈科特港(介绍了尼日利亚的4.20°N,7.00°E)和Nsukka(6.90°N,7.67°E),对流层数据采集网络提供了两年(2011年1月至2012年12月)的存档数据。利用科吉州安尼格巴市大气研究中心(TRODAN)进行的研究表明,在干旱季节月份的表面折射率(N )值较低,而在干旱季节则较高。湿季月份,沿海地区的N S 值比内陆地区高,还可以推算出阿布贾的N S 平均值,阿库雷(Akure),乔斯(Jos),拉各斯(Lagos),马库尔迪(Markurdi),努苏卡(Nsuk​​ka)和哈科特港(Port-Harcourt)为355、3 62、303、391、375、361和399个N单元。同样,场强变异性(FSV)的平均值在各个位置分别为30.38、20.16、21.39、24.21、24.31、21.49和21.48 dB,FSV值在旱季期间较高,在雨季期间较低。 。这可能归因于干旱季节的高温流行和潮湿季节的低温流行。

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