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Height-dependent sunrise and sunset: Effects and implications of the varying times of occurrence for local ionospheric processes and modelling

机译:与高度相关的日出和日落:变化的发生时间对局部电离层过程和模型的影响和影响

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摘要

It is well established that the sunrise and sunset periods are of particular importance to ionospheric research and modelling because of the rapid changes in the ionospheric plasma density, temperature, and dynamics. In particular, the sharp increase in the ionisation following sunrise results in a quick increase in the ionospheric peak density, N_mF_2, and a decrease in the peak height, h_mF_2. Changes in plasma temperature, scale height and transport processes add further complexity which makes it difficult to investigate and model the ionospheric behaviour during this transitional period from night to day. One of the aspects contributing to this difficulty is that not all ionospheric altitudes are exposed to the first sunlight of the day at the same time. During sunrise, the upper part of the ionosphere is illuminated prior to the lower part which is still in the dark. The boundary between sunlit and dark regions moves downwards until it reaches the surface of the Earth, which is commonly taken as the moment of sunrise at certain geographical coordinates. This means that the sunrise at surface level does not occur until after the entire ionosphere has been illuminated. During sunset, the same process happens in reverse order. This paper addresses the issue of these altitude-dependent times of sunrise and sunset and reports on our study of some of the effects on the diurnal variations in the ionospheric characteristics.
机译:众所周知,由于电离层等离子体密度,温度和动力学的快速变化,日出和日落时间对电离层研究和建模尤为重要。特别是,日出后电离的急剧增加导致电离层峰值密度N_mF_2迅速增加,而峰高h_mF_2减小。等离子体温度,水垢高度和传输过程的变化增加了进一步的复杂性,这使得很难在从黑夜到白天的过渡期内研究和模拟电离层的行为。造成此困难的一个方面是,并非所有电离层高度都同时暴露于一天的第一缕阳光下。在日出期间,电离层的上部先于黑暗的下部照亮。阳光和黑暗区域之间的边界向下移动,直到到达地球表面为止,这通常被视为某些地理坐标处的日出时刻。这意味着直到整个电离层被照亮后,才会出现表面水平的日出。在日落期间,相同的过程以相反的顺序发生。本文讨论了日出和日落时间与海拔高度相关的问题,并报告了我们对电离层特征日变化的影响的研究。

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