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Current long-term negative average annual energy balance of the earth leads to the new little ice age

机译:当前地球长期长期的年平均负能量平衡导致新的小冰期

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The average annual decreasing rate of the total solar irradiance (TSI) is increasing from the 22-nd to the 23-rd and 24-th cycles, because the Sun since the 1990 is in the phase decline of quasi-bicentennial variation. The portion of the solar energy absorbed by the Earth is decreasing. Decrease in the portion of TSI absorbed by the Earth since 1990 remains uncompensated by the Earth's radiation into space at the previous high level over a time interval determined by the thermal inertia of the Ocean. A long-term negative deviation of the Earth’s average annual energy balance from the equilibrium state is dictating corresponding variations in it’s the energy state. As a result, the Earth will have a negative average annual energy balance also in the future. This will lead to the beginning of the decreasing in the Earth's temperature and of the epoch of the Little Ice Age after the maximum phase of the 24-th solar cycle approximately since the end of 2014. The influence of the consecutive chain of the secondary feedback effects (the increase in the Bond albedo and the decrease in the concentration of greenhouse gases in the atmosphere due to cooling) will lead to an additional reduction of the absorbed solar energy and reduce the greenhouse effect. The start of the TSI’s Grand Minimum is anticipated in the solar cycle 27±1 in 2043±11 and the beginning of the phase of deep cooling of the 19th Little Ice Age for the past 7,500 years around 2060±11.
机译:总太阳辐照度(TSI)的年均下降率从第22个周期增加到第23个周期和第24个周期,这是因为1990年以来太阳处于准两百年变化的阶段性下降中。地球吸收的太阳能部分正在减少。自1990年以来,地球吸收的TSI份额的减少仍然无法通过海洋热惯性确定的时间间隔内的高水平辐射进入太空来补偿。地球平均年平均能量平衡与平衡状态之间的长期负偏差指示能量状态处于相应变化。结果,将来地球也将具有负的年均能量平衡。这将导致大约从2014年底开始,在第24个太阳周期的最大阶段之后,地球温度开始下降,小冰河时代开始。次级反馈的连续链的影响的影响(由于冷却导致邦德反照率的增加和大气中温室气体浓度的降低)将导致吸收的太阳能进一步减少并降低温室效应。 TSI极小最小值的开始预计在2043±11的太阳周期27±1,以及在2060±11的过去7500年中第19小冰期的深度冷却阶段的开始。

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