论文标题

2019年12月26日和2020年6月21日在沙特阿拉伯和其他环境相似的日食的太阳能日食期间的空气温度和湿度

Air temperature and humidity during the solar eclipses of 26 December 2019 and of 21 June 2020 in Saudi Arabia and in other eclipses with similar environments

论文作者

Penaloza-Murillo, Marcos A., Elmhamdi, Abouazza, Pasachoff, Jay M., Roman, Michael T., Liu, Yu, Al-Mostafa, Z. A., Maghrabi, A. H., Al-Trabulsy, H. A.

论文摘要

我们报告了2019年12月26日的两次太阳日食,分别在2020年6月21日的两次太阳日食中变化,分别在沙特阿拉伯的Al-Hofuf和Riyadh城市。在十二月的日食中,太阳已经被黯然失色(占该地区的91.53%),而六月的日食虽然在阿拉伯半岛其他地方也被环形,但在利雅得(Riyadh)却是一部分(面积为72.80%)。这种差异显然影响了这两个事件中观察到的对温度,相对湿度(RH)和蒸气压(VP)变量的响应。这些变量的变化对于第一个日食而言并未引起人们的注意,因为它在当天的自然变异之内;然而,对于另一个人来说,他们显然表现出一些趋势改变,我们分析和讨论。在利雅得检测到温度降低3.2°C;但是,RH和VP显示出振荡,我们根据其他日食中报道的类似作用来解释。我们发现从这个城市的日食中央阶段测得的时间滞后约15分钟。我们从温度和RH的时间变化的计算速率中检查了相关的波动和动态。试图确定在类似环境中太阳日食的影响,我们与对这些变量在近东,北非和美国的其他观察结果进行了广泛的比较。我们将我们的结果与与12月Eclipse合作的其他作者获得的结果进行了比较,但在阿拉伯联合酋长国和阿曼,这显示了不同的结果。这些综合群体表明,在沙漠环境中以及其他类似的日食中,下层大气可以有效地响应太阳的日食。作为序言,还包括日食气象的历史修订。

We report air temperature and humidity changes during the two solar eclipses of 26 December 2019, and of 21 June 2020, respectively, in the cities of Al-Hofuf and Riyadh in Saudi Arabia. During the December eclipse the Sun rose already eclipsed (91.53% of the area covered) while the June eclipse, although also annular in other places of the Arabian Peninsula, was just partial at Riyadh (area covered 72.80%). This difference apparently affected the observed response on the recorded variables of temperature, relative humidity (RH) and vapor pressure (VP) in the two events. Change in these variables went unnoticed for the first eclipse since it was within the natural variability of the day; yet for the other, they showed clearly some trend alterations, which we analyze and discuss. A decrease in temperature of 3.2 °C was detected in Riyadh; however, RH and VP showed an oscillation that we explain in the light of a similar effect reported in other eclipses. We found a time lag of about 15 min measured from the eclipse central phase in this city. We made an inspection of related fluctuations and dynamics from the computed rates of the temporal variation of temperature and RH. Trying to identify the influence of solar eclipses in similar environments we have made a broad inter-comparison with other observations of these variables in the Near East, northern Africa and in the United States. We compare our results with results obtained by other authors working with the December eclipse but in the United Arab Emirates and Oman, which showed dissimilar results. These inter-comparisons show how effectively the lower atmosphere can respond to a solar eclipse within a desert environment and others similar. As a preamble, a historical revision of temperature and humidity in the context of eclipse meteorology is also included.

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