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Effects of Meridional Flow Variations on Solar Cycles 23 and 24

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arxiv 1408.0035 v1 pith:EY23MSIK submitted 2014-07-31 astro-ph.SR

Effects of Meridional Flow Variations on Solar Cycles 23 and 24

classification astro-ph.SR
keywords flowcyclemeridionalvariationspolarfluxminimumsolar
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The faster meridional flow that preceded the solar cycle 23/24 minimum is thought to have led to weaker polar field strengths, producing the extended solar minimum and the unusually weak cycle 24. To determine the impact of meridional flow variations on the sunspot cycle, we have simulated the Sun's surface magnetic field evolution with our newly developed surface flux transport model. We investigate three different cases: a constant average meridional flow, the observed time-varying meridional flow, and a time-varying meridional flow in which the observed variations from the average have been doubled. Comparison of these simulations shows that the variations in the meridional flow over cycle 23 have a significant impact (~20%) on the polar fields. However, the variations produced polar fields that were stronger than they would have been otherwise. We propose that the primary cause of the extended cycle 23/24 minimum and weak cycle 24 was the weakness of cycle 23 itself - with fewer sunspots, there was insufficient flux to build a big cycle. We also find that any polar counter-cells in the meridional flow (equatorward flow at high latitudes) produce flux concentrations at mid-to-high latitudes that are not consistent with observations.

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Cited by 3 Pith papers

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    A review of ~230 published solar-cycle predictions finds most missed the observed peak; forecasts made after each cycle began were closer to reality.

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    A review of solar cycle predictions shows most methods failed for cycles 24 and 25, with polar field proxies most reliable when timed after the previous cycle's maximum and dynamo models needing better data assimilation.