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Table 1

Overview and results of all the sedimentation simulations.

ID Σg Coll. model Por. model α Ψmax  ⟨ Ψfin ⟩   ⟨ mfin ⟩   ⟨ St ⟩  H p
[g/cm2] [g] [Hg]
(1) (2) (3) (4) (5) (6) (7) (8) (9) (10)

DD 100 hit&stick only compact 0 1 1 2.5 × 10-3 3.5 × 10-3 0
DDa 100 hit&stick only Okuzumi 0 107 1.1 × 106 1.8 × 108 1.6 0
SB1 100 simpl. Br. Okuzumi 0 104 2 × 103 2.2 × 10-3 8.0 × 10-5 0
SB2 100 simpl. Br. Okuzumi 10-6 104 1.6 × 103 3.2 × 10-3 7.0 × 10-5 0.2
SB3 100 simpl. Br. Okuzumi 10-4 5 × 103 21 2.2 × 10-4 5.0 × 10-4 0.6
CB1 100 compl. Br. Okuzumi 10-4 103 3 1.2 × 10-2 4.5 × 10-3 0.2
CB2 100 compl. Br. Ormel 10-4 10 2 1.2 × 10-2 4.7 × 10-3 0.2
CB3 100 compl. Br. Okuzumi 10-2 3 × 102 3 3.6 × 10-7 1.6 × 10-4 0.95
CB4 100 compl. Br. Ormel 10-2 10 2 8.9 × 10-8 1.2 × 10-4 0.95
LD1 10 compl. Br. Okuzumi 10-4 5 × 102 2 8.9 × 10-4 9.7 × 10-3 0.2
LD2 10 compl. Br. Okuzumi 10-2 5 × 101 23 2.3 × 10-9 1.3 × 10-4 0.95
HD1 1000 compl. Br. Okuzumi 10-4 5 × 104 6 8.3 × 10-2 6.7 × 10-4 0.5
HD2 1000 compl. Br. Okuzumi 10-2 103 3 1.2 × 10-5 4.6 × 10-5 0.95

Notes. Column 1 is the ID of the simulations (DD – Dullemond& Dominik models, SB – simplified Braunschweig model, CB – complete Braunschweig model, LD – low density model, HD – high density model), Col. 2 is the gas surface density, Col. 3 describes the used collision model (hit&stick, simplified Braunschweig model, or complete Braunschweig model), Col. 4 indicates the used porosity model (based on Ormel et al. 2007 or Okuzumi et al. 2009), Col. 5 describes the value of the turbulence parameter α, Col. 6 is the maximum enlargement parameter of the aggregates during the simulation, Cols. 7, 8, and 8 are the final average enlargement parameter, mass and Stokes number of the particles respectively, and Col. 10 is the scale height of the dust expressed in the scale height of the gas.

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