A multiple flux-tube solar wind model
arXiv:1611.08744 · doi:10.3847/1538-4357/aa6398
Abstract
We present a new model, MULTI-VP, that computes the three-dimensional structure of the solar wind which includes the chromosphere, the transition region, and the corona and low heliosphere. MULTI-VP calculates a large ensemble of wind profiles flowing along open magnetic field-lines which sample the whole three-dimensional atmosphere or, alternatively, on a given region of interest. The radial domain starts from the photosphere and extends, typically, to about 30 . The elementary uni-dimensional wind solutions are based on a mature numerical scheme which was adapted in order to accept any flux-tube geometry. We discuss here the first results obtained with this model. We use Potential Field Source-Surface (PFSS) extrapolations of magnetograms from the Wilcox Solar Observatory (WSO) to determine the structure of the background magnetic field. Our results support the hypothesis that the geometry of the magnetic flux-tubes in the lower corona controls the distribution of slow and fast wind flows. The inverse correlation between density and speed faraway from the Sun is a global effect resulting from small readjustments of the flux-tube cross-sections in the high corona (necessary to achieve global pressure balance and a uniform open flux distribution). In comparison to current global MHD models, MULTI-VP performs much faster and does not suffer from spurious cross-field diffusion effects. We show that MULTI-VP has the capability to predict correctly the dynamical and thermal properties of the background solar wind (wind speed, density, temperature, magnetic field amplitude and other derived quantities) and to approach real-time operation requirements.
(accepted for publication on Astrophysical Journal)
References in corpus (7)
- Self-consistent Coronal Heating and Solar Wind Acceleration from Anisotropic Magnetohydrodynamic Turbulence
- The Depiction of Coronal Structure in White Light Images
- Forecasting Solar Wind Speeds
- Inbound waves in the solar corona: a direct indicator of Alfvén Surface location
- Observational evidence for the associated formation of blobs and raining inflows in the solar Corona
- Turbulence-Driven Coronal Heating and Improvements to Empirical Forecasting of the Solar Wind
- Relative drifts and temperature anisotropies of protons and particles in the expanding solar wind -- 2.5D hybrid simulations
Cited by in corpus (40)
- Origins of the Ambient Solar Wind: Implications for Space Weather
- Vlasov methods in space physics and astrophysics
- Statistical Analysis and Catalog of Non-polar Coronal Holes Covering the SDO-era using CATCH
- Relating streamer flows to density and magnetic structures at the Parker Solar Probe
- COCONUT, a novel fast-converging MHD model for solar corona simulations: I. Benchmarking and optimization of polytropic solutions
- The Effect of Magnetic Variability on Stellar Angular Momentum Loss I: The Solar Wind Torque During Sunspot Cycles 23 & 24
- The origin of slow Alfvénic solar wind at solar minimum
- The Dynamic Time Warping as a Means to Assess Solar Wind Time Series
- Global solar magnetic field organization in the outer corona: influence on the solar wind speed and mass flux over the cycle
- Contextual Predictions for Parker Solar Probe I: Critical Surfaces and Regions
- Alfvén-wave driven magnetic rotator winds from low-mass stars I: rotation dependences of magnetic braking and mass-loss rate
- COCONUT, a novel fast-converging MHD model for solar corona simulations: II. Assessing the impact of the input magnetic map on space-weather forecasting at minimum of activity
- Implementing the MULTI-VP coronal model in EUHFORIA: test case results and comparisons with the WSA coronal model
- Chasing star-planet magnetic interactions: the case of Kepler-78
- Detailed imaging of coronal rays with the Parker Solar Probe
- Exploring the Solar Wind from its Source on the Corona into the Inner Heliosphere during the First Solar Orbiter - Parker Solar Probe Quadrature
- Constraining Global Coronal Models with Multiple Independent Observables
- 2D solar wind speeds from 6 to 26 solar radii in solar cycle 24 by using Fourier filtering
- Direct Detection of Solar Angular Momentum Loss with the Wind Spacecraft
- Observational Evidence of S-Web Source of the Slow Solar Wind
- Effects of Mesh Topology on MHD Solution Features in Coronal Simulations
- Linking the Sun to the Heliosphere Using Composition Data and Modelling. A Test Case with a Coronal Jet
- 3-Phase Evolution of a Coronal Hole, Part II: The Magnetic Field
- To E or not to E: Numerical Nuances of Global Coronal Models
- Solar Angular Momentum Loss Over the Past Several Millennia
- Expansion of High Speed Solar Wind Streams from Coronal Holes through the Inner Heliosphere
- Source-dependent properties of two slow solar wind states
- Dynamical coupling of a mean-field dynamo and its wind: Feedback loop over a stellar activity cycle
- Coronal Bright Points as possible sources of density variations in the Solar Corona
- Shock-wave radio probing of solar wind sources in coronal magnetic fields
- Flux-tube-dependent propagation of Alfvén waves in the solar corona
- Testing the flux tube expansion factor -- solar wind speed relation with Solar Orbiter data
- Production of sunspots and their effects on the corona and solar wind: Insights from a new 3D flux-transport dynamo model
- Predicting CMEs using ELEvoHI with STEREO-HI beacon data
- A monitoring campaign (2013-2020) of ESA's Mars Express to study interplanetary plasma scintillation
- Matching temporal signatures of solar features to their corresponding solar wind outflows
- Time-evolving coronal modelling of the solar maximum around the solar storms in May 2024 by COCONUT
- Total solar eclipse 2024 modelling with COCONUT
- A parametric study of solar wind properties and composition using fluid and kinetic solar wind models
- Testing the Alfvén-wave model of the solar wind with interplanetary scintillation