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ACRIM-gap and TSI trend issue resolved using a surface magnetic flux TSI proxy model

机译:使用表面磁通量TSI代理模型解决了ACRIM间隙和TSI趋势问题

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摘要

The ACRIM-gap (1989.5-1991.75) continuity dilemma for satellite TSI observations is resolved by bridging the satellite TSI monitoring gap between ACRIM 1 and ACRIM2 results with TSI derived from Krivova et al.'s (2007) proxy model based on variations of the surface distribution of solar magnetic flux. ‘Mixed' versions of ACRIM and PMOD TSI composites are constructed with their composites' original values except for the ACRIM gap, where Krivova modeled TSI is used to connect ACRIM1 and ACRIM2 results. Both ‘mixed' composites demonstrate a significant TSI increase of 0.033 %/decade between the solar activity minima of 1986 and 1996, comparable to the 0.037 % found in the ACRIM composite. The finding supports the contention of Willson (1997) that the ERBS/ERBE results are flawed by uncorrecteddegradation during the ACRIM gap and refutes the Nimbus7/ERB ACRIM gap adjustment Fr_hlich and Lean (1998) employed in constructing the PMOD.
机译:卫星TSI观测的ACRIM-gap(1989.5-1991.75)连续性难题可以通过将KRIMova等人(2007)代理模​​型基于TSI变化的桥梁TSI桥接ACRIM 1和ACRIM2结果之间的卫星TSI监测差距来解决。太阳磁通的表面分布。 ACRIM和PMOD TSI复合材料的“混合”版本以其复合材料的原始值构造,但ACRIM间隙除外,其中Krivova建模的TSI用于连接ACRIM1和ACRIM2结果。两种“混合”复合材料在1986年和1996年的最低太阳活动之间都显示出TSI显着提高了0.033%/十年,与ACRIM复合材料中的0.037%相当。这一发现支持了Willson(1997)的论点,即ERBS / ERBE结果因ACRIM间隙期间未校正的降解而存在缺陷,并驳斥了Nimbus7 / ERB ACRIM间隙调整Fr_hlich和Lean(1998)构造PMOD的观点。

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