The Solar Chromosphere as Induction Disk and The Inverse Joule-Thomson Effect

C. Vita-Finzi
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引用次数: 1

Abstract

The connection between nuclear fusion in the Sun’s core and solar irradiance is obscured among other things by uncertainty over the mechanism of coronal heating. Data for solar wind density and velocity, sunspot number, and EUV flux suggest that electromagnetic energy from the Sun’s convection zone is converted by induction through the chromosphere into thermal energy. The helium and hydrogen mixture exhaled by the Sun is then heated by the inverse Joule-Thomson effect when it expands via the corona into space. The almost complete shutdown of the solar wind on 10-11 May 1999 demonstrated that its velocity is a more faithful indicator of solar activity than are sunspots as it reflects short-term variations in coronal heating rather than quasicyclical fluctuations in the Sun’s magnetism. Its reconstruction from the cosmic ray flux using isotopes spanning over 800,000 yr should therefore benefit the analysis and long-term forecasting of Earth and space weather
太阳色球作为感应盘和反焦耳-汤姆逊效应
由于日冕加热机制的不确定性,太阳核心的核聚变和太阳辐照度之间的联系变得模糊了。关于太阳风密度和速度、太阳黑子数和极紫外通量的数据表明,来自太阳对流区的电磁能量通过色球层的感应转化为热能。太阳呼出的氦和氢的混合物在通过日冕向太空膨胀时,会被反焦耳-汤姆逊效应加热。1999年5月10日至11日太阳风几乎完全停止,这表明它的速度比太阳黑子更能准确地反映太阳活动,因为它反映的是日冕加热的短期变化,而不是太阳磁力的准周期性波动。因此,利用跨越80万年的同位素对宇宙射线通量进行重建,将有利于地球和空间天气的分析和长期预报
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