The Characteristics of Valley Phase as Predictor of the Forthcoming Solar Cycle
arXiv:1808.01417 · doi:10.1016/j.asr.2018.08.004
Abstract
Is Solar Cycle 24 anomalous? How do we predict the main features of a forthcoming cycle? In order to reply such questions, this work partitions quantitatively each cycle into valley, ascend, peak, and descend phases, statistically investigate the correlations between valley phase and the forthcoming cycle. We find that the preceding valley phase may dominate and can be predictor of the forthcoming cycle: (1) The growth rate in ascend phase strongly negatively correlates to valley length and strongly positively correlates to cycle maximum. (2) The cycle maximum strongly negatively correlates to valley length, and strongly positively correlates to cycle minimum. (3) The cycle period strongly negatively correlates to the valley variation. Based on these correlations, we conclude that the solar cycle 24 is a relatively weak and long cycle which is obviously weaker than Cycle 23. The similarity analysis also presents the similar result. The Cycle 25 is also inferred possibly to be a weak cycle. These results can help us understanding the physical processes of solar cycles.
16 pages, 7 figures, accepted by Adv Space Res
References in corpus (6)
- Predicting solar cycle 24 with a solar dynamo model
- Solar activity forecast with a dynamo model
- The unusual minimum of sunspot cycle 23 a consequence of Sun's meridional plasma flow variations
- Long-term variations in the north-south asymmetry of solar activity and solar cycle prediction, III: prediction for the amplitude of solar cycle 25
- A Helioseismic Perspective on the Depth of the Minimum Between Solar Cycles 23 and 24
- The Mid-term and Long-term Solar Quasi-periodic Cycles and the Possible Relationship with Planetary Motions