Belt-Questions: Difference between revisions

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= [https://ui.adsabs.harvard.edu/abs/2020ApJS..250...13K/abstract Paper] =
= [https://ui.adsabs.harvard.edu/abs/2020ApJS..250...13K/abstract Paper] =
* \(T\) in Section 2.3.3 = Matter Temperature (Gas + Dust) or just gas (Temperature related to internal Energy \(E_{\mathrm{int}} = c_V \rho_{\mathrm{gas}} T \) )?
* \( 4 \pi B_\text{rad} \to c B_\text{rad} \), right?
* 2.3.4 Why is the linearization a decoupling of Eq.16 und Eq.17


= Makemake2.1 =
= Makemake2.1 =

Latest revision as of 16:18, 11 September 2026

General

Paper

  • \(T\) in Section 2.3.3 = Matter Temperature (Gas + Dust) or just gas (Temperature related to internal Energy \(E_{\mathrm{int}} = c_V \rho_{\mathrm{gas}} T \) )?
  • \( 4 \pi B_\text{rad} \to c B_\text{rad} \), right?
  • 2.3.4 Why is the linearization a decoupling of Eq.16 und Eq.17

Makemake2.1

Gas and Dust Density Defintions

src/Makemake2.1/Irradiation.c:Irradiation(Data *data, Grid *grid)

 rhogas  = data->Vc[RHO][kl][jl][il];
 Tgas    = data->GasTemperature[kl][jl][il];
 Trad    = IrradiationTemperature;
 #if IRRADIATION == YES
 rhodust = data->DustToGasMassRatio[kl][jl][il] * rhogas;
 Tdust   = data->DustTemperature[kl][jl][il];
 #endif
  • Inertia of dust is neglected?