The need for reliable predictions of the solar activity cycle motivates the development of dynamo models incorporating a representation of surface processes sufficiently detailed to allow assimilation of magnetographic data. In this series of papers we present one such dynamo model, and document its behavior and properties. This first paper focuses on one of the model's key components, namely surface magnetic flux evolution. Using a genetic algorithm, we obtain best-fit parameters of the transport model by least-squares minimization of the differences between the associated synthetic synoptic magnetogram and real magnetographic data for activity cycle 21. Our fitting procedure also returns Monte Carlo-like error estimates. We show that the ...
The Babcock-Leighton (BL) flux-transport model is a widely-accepted dynamo model of the Sun. This dy...
The long-standing problem of understanding the evolution of the global magnetic fields that drive so...
Aims. We aim to investigate how converging flows towards active regions affect the surface transport...
Accurate prediction of solar activity calls for precise calibration of solar cycle models. Consequen...
Modelling the solar magnetic cycle requires the prescription of several poorly-constrained parameter...
The Sun, by the virtue of its proximity to Earth, serves as an excellent astrophysical laboratory fo...
Context. Magnetohydrodynamic interactions between plasma flows and magnetic fields is fundamental to...
Accurate prediction of solar activity calls for precise calibration of solar cycle models. Consequen...
Although systematic measurements of the Sun's polar magnetic field exist only from mid-1970s, other ...
Over the past several decades, Flux-Transport Dynamo (FTD) models have emerged as a popular paradigm...
The emergence of tilted bipolar active regions (ARs) and the dispersal of their flux, mediated via p...
In our Sun, the magnetic cycle is driven by the dynamo action occurring inside the convection zone, ...
Whether or not the upcoming cycle 24 of solar activity will be strong is being hotly debated. The so...
We discuss the current status of solar dynamo theory and describe the dynamo model developed by our ...
We study the effects of incorporating magnetic buoyancy in a model of the solar dynamo-which draws i...
The Babcock-Leighton (BL) flux-transport model is a widely-accepted dynamo model of the Sun. This dy...
The long-standing problem of understanding the evolution of the global magnetic fields that drive so...
Aims. We aim to investigate how converging flows towards active regions affect the surface transport...
Accurate prediction of solar activity calls for precise calibration of solar cycle models. Consequen...
Modelling the solar magnetic cycle requires the prescription of several poorly-constrained parameter...
The Sun, by the virtue of its proximity to Earth, serves as an excellent astrophysical laboratory fo...
Context. Magnetohydrodynamic interactions between plasma flows and magnetic fields is fundamental to...
Accurate prediction of solar activity calls for precise calibration of solar cycle models. Consequen...
Although systematic measurements of the Sun's polar magnetic field exist only from mid-1970s, other ...
Over the past several decades, Flux-Transport Dynamo (FTD) models have emerged as a popular paradigm...
The emergence of tilted bipolar active regions (ARs) and the dispersal of their flux, mediated via p...
In our Sun, the magnetic cycle is driven by the dynamo action occurring inside the convection zone, ...
Whether or not the upcoming cycle 24 of solar activity will be strong is being hotly debated. The so...
We discuss the current status of solar dynamo theory and describe the dynamo model developed by our ...
We study the effects of incorporating magnetic buoyancy in a model of the solar dynamo-which draws i...
The Babcock-Leighton (BL) flux-transport model is a widely-accepted dynamo model of the Sun. This dy...
The long-standing problem of understanding the evolution of the global magnetic fields that drive so...
Aims. We aim to investigate how converging flows towards active regions affect the surface transport...