Prosiectau fesul blwyddyn
Crynodeb
Previous work has established an empirical relationship between densities gained from coronal rotational tomography near the ecliptic plane with solar wind outflow speeds at heliocentric distance r 0 = 8R ⊙. This work aims to include solar wind acceleration, and thus velocity profiles out to 1 au. Inner boundary velocities are given as a function of normalized tomographic densities, ρ N , as V 0 = 75 ∗ e − 5.2 * ρ N + 108 , and typically range from 100 to 180 km s−1. The subsequent acceleration is defined as V ( r ) = V 0 1 + α IP 1 − e − r − r 0 / r H , with α IP ranging between 1.75 and 2.7, and r H between 50 and 35 R ⊙ dependent on V 0. These acceleration profiles approximate the distribution of in situ measurements by Parker Solar Probe (PSP) and other measurements at 1 au. Between 2018 November and 2021 September these constraints are applied using the HUXt model and give good agreement with in situ observations at PSP, with a ∼6% improvement compared with using a simpler constant acceleration model previously considered. Given the known tomographical densities at 8 R ⊙, we extrapolate density to 1 au using the model velocities and assuming mass flux conservation. Extrapolated densities agree well with OMNI measurements. Thus coronagraph-based estimates of densities define the ambient solar wind outflow speed, acceleration, and density from 8 R ⊙ to at least 1 au. This sets a constraint on more advanced models, and a framework for forecasting that provides a valid alternative to the use of velocities derived from magnetic field extrapolations.
Iaith wreiddiol | Saesneg |
---|---|
Rhif yr erthygl | 64 |
Cyfnodolyn | The Astrophysical Journal |
Cyfrol | 961 |
Rhif cyhoeddi | 1 |
Dynodwyr Gwrthrych Digidol (DOIs) | |
Statws | Cyhoeddwyd - 01 Ion 2024 |
Ôl bys
Gweld gwybodaeth am bynciau ymchwil 'Constraints on Solar Wind Density and Velocity Based on Coronal Tomography and Parker Solar Probe Measurements'. Gyda’i gilydd, maen nhw’n ffurfio ôl bys unigryw.Prosiectau
- 2 Wedi Gorffen
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SWEEP: Space Weather Empirical Ensemble Package
Morgan, H. (Prif Ymchwilydd), Bloomfield, D. (Cyd-ymchwilydd), Owens, M. J. (Cyd-ymchwilydd), Yeates, A. R. (Cyd-ymchwilydd) & Weinzierl, M. (Ymchwilydd)
Science & Technology Facilities Council
01 Hyd 2020 → 30 Medi 2023
Prosiect: Ymchwil a ariannwyd yn allanol
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Solar System Physics at Aberystwyth University
Morgan, H. (Prif Ymchwilydd), Cook, T. (Cyd-ymchwilydd), Gorman, M. (Cyd-ymchwilydd), Li, X. (Cyd-ymchwilydd), Pinter, B. (Cyd-ymchwilydd) & Taroyan, Y. (Cyd-ymchwilydd)
Science & Technology Facilities Council
01 Ebr 2019 → 31 Rhag 2022
Prosiect: Ymchwil a ariannwyd yn allanol