A brief overview of solar cycle variability effects on climate

Manyika Kabuswa Davy, Daka Alfred, L. K. Matindih, Hamweendo Agripa, D. Mukonda
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Abstract

Among interesting areas of scientific research is the study of the relationship between solar cycle variability and climate change. For centuries now, speculations on the influence of variations in the sunlight intensity on climate have been on going. It is without exaggeration to state that generally the earth has gotten warmer over the past centuries. Over the years, studies have shown that there is a very strong correlation between earth’s surface temperature and sunlight intensity variability. Some scholars argue that the main effect on the weather is not a change in the luminosity of the Sun during the period of maximum activity, but an increase in the flow of charged particles (solar wind). These act on the Earth’s magnetosphere and ionosphere. This action plays a role of the trigger that starts the processes, the energy of which is contained in the Earth’s atmosphere. The periodicity of these processes (hurricanes, floods, epidemics) often correlates with the period of solar activity. Nevertheless, it is quite possible that there may be the processes with a much longer period (hundreds and thousands of years). Some researchers suggest, that the observed increase in the Earth’s temperature is part of this long-term process. Thus, this piece of work compares these two views in an attempt to check the effects of solar cycle variability on climate.
太阳周期变率对气候影响的简要概述
一个有趣的科学研究领域是研究太阳周期变化和气候变化之间的关系。几个世纪以来,关于阳光强度变化对气候影响的猜测一直在进行。可以毫不夸张地说,在过去的几个世纪里,地球总体上变暖了。多年来,研究表明,地球表面温度与阳光强度变化之间存在很强的相关性。一些学者认为,对天气的主要影响不是太阳最大活动期间亮度的变化,而是带电粒子流(太阳风)的增加。它们作用于地球的磁层和电离层。这个动作在启动这个过程中起着触发作用,这个过程的能量包含在地球的大气中。这些过程(飓风、洪水、流行病)的周期性通常与太阳活动的周期有关。然而,很有可能存在一个更长的周期(数百年和数千年)的过程。一些研究人员认为,观测到的地球温度升高是这一长期过程的一部分。因此,这项工作比较了这两种观点,试图检查太阳周期变化对气候的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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