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The global infrared energy budget of the thermosphere from 1947 to 2016 and implications for solar variability

机译:1947年至2016年热圈的全球红外能量预算及其对太阳多变性的影响

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We present an empirical model of the global infrared energy budget of the thermosphere over the past 70years. The F-10.7, Ap, and Dst indices are used in linear regression fits to the 14.5year time series of radiative cooling by carbon dioxide and nitric oxide measured by the Sounding of the Atmosphere using Broadband Emission Radiometry (SABER) instrument on the TIMED satellite. Databases of these indices are used to develop the radiative cooling time series from 1947. No consistent relation between the occurrence of peak sunspot number and peak infrared cooling is found over the past six solar cycles. The total infrared energy radiated by the thermosphere, integrated over a solar cycle, is nearly constant over five complete solar cycles studied. This is a direct consequence of the geoeffective solar energy also being nearly constant over the same intervals. These results provide a new metric for assessing the terrestrial context of the long-term record of solar-related indices.
机译:我们提出了过去70年热圈全球红外能量收支的经验模型。 F-10.7,Ap和Dst指数用于线性回归,以拟合14.5年的时间序列,该时间序列是由TIMED卫星上的宽带辐射辐射测量(SABER)仪器通过大气探测法测得的二氧化碳和一氧化氮的辐射冷却时间。这些指数的数据库用于开发自1947年以来的辐射冷却时间序列。在过去的六个太阳周期中,未发现峰值黑子数与峰值红外冷却之间的一致关系。在研究的五个完整的太阳周期中,热圈辐射的总红外能量在一个太阳周期中被积分,几乎是恒定的。这是地球有效太阳能在相同间隔内也几乎恒定的直接结果。这些结果为评估与太阳有关的指数的长期记录的地面背景提供了新的指标。

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