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THE REASONS AND CONSEQUENCES OF CLIMATE CHANGES

机译:气候变化的原因和后果

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摘要

Modern knowledge of the reasons of climate change is not specifically complete. This especially concerns estimation of the role of "small" climate-forming factors. In literature they can be considered as external forces, such as solar activity, determining influx of electromagnetic radiation and charged particles, and also volcanic and anthropogenic activity determining aerosol pollution of the atmosphere. "Small" climate-forming forces may also be regarded as a change of orbital parameters of the Earth, long-period dates, change of rotation speed of the Earth and others. Let's consider only two factors which influences on the climate are a subject of hard debates. Instability of the electromagnetic and corpuscular change coming from the Sun and Space is established theoretically and has received experimental confirmation. High-precision measurements of an integrated astrophysical solar constant have shown its variability about 0,1 % at the development of large spots on the Sun. In the long-term change of astrophysical solar constant, the trend about 0,02 % per year is found out. Variations of a meteorological solar constant are by order higher and are also connected to the change of gas and aerosol structure of the atmosphere due to the influence of ultra-violet and corpuscular radiation of the Sun, space beams of solar and galactic origin, volcanic and anthropogenic activity.
机译:关于气候变化原因的现代知识尚不完全完整。这尤其涉及对“小的”气候形成因素的作用的估计。在文献中,它们可以被视为外力,例如太阳活动,确定电磁辐射和带电粒子的流入量,以及确定大气气溶胶污染的火山和人为活动。 “小”的气候形成力也可以被认为是地球轨道参数,长周期日期,地球自转速度等的变化。让我们只考虑影响气候的两个因素,这是激烈辩论的主题。理论上确定了来自太阳和太空的电磁和微粒变化的不稳定性,并已获得实验证实。高精度的天体综合太阳常数测量表明,在太阳上出现大光斑时,其变化率约为0.1%。在天体太阳常数的长期变化中,发现了每年约0.02%的趋势。气象太阳常数的变化要大一个数量级,并且由于太阳的紫外线和微粒辐射,太阳和银河系的空间光束,火山和太阳的影响,还与大气中气体和气溶胶结构的变化有关。人为活动。

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