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sunfluidh:species_properties_namelist

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sunfluidh:species_properties_namelist [2016/10/04 21:14] yannsunfluidh:species_properties_namelist [2016/10/08 16:39] – [Species_molecular_Mass (type = real)] yann
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 ===== Namelist "Species_Properties" ===== ===== Namelist "Species_Properties" =====
  
-==== List of variable and definition ====+
 This data setup is only used in the full version of sunfluidh for the simulation of multi-species gas flows under low-Mach number hypothesis. This data setup is only used in the full version of sunfluidh for the simulation of multi-species gas flows under low-Mach number hypothesis.
 It is used to define every thermo-chemical properties of species to estimate physical properties of gas mixture such as heat capacity, thermal conductivity, transport coefficients of diffusion, .... It is used to define every thermo-chemical properties of species to estimate physical properties of gas mixture such as heat capacity, thermal conductivity, transport coefficients of diffusion, ....
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 ----- -----
  
-=== Species_Name (type = character string (6)) ===+==== Species_Name (type = character string (6)) ====
  
    * Name of the species present in the gas mixture    * Name of the species present in the gas mixture
  
-=== Species_molecular_Mass (type real) === +==== Species_molecular_Mass  ==== 
 +   * type : real value
    * Molecular mass (mol/kg)    * Molecular mass (mol/kg)
  
-=== Reference_Molecular_Heat_Capacity (type real) === +==== Reference_Molecular_Heat_Capacity ==== 
 +   * type : real value
    * Species heat capacity (J/K/kg)    * Species heat capacity (J/K/kg)
  
-=== Schmidt_Number (type real) === +==== Schmidt_Number ==== 
 +   * type : real value
    * The Schmidt number $Sch$ is used to define the diffusion coefficient of the species from the kinematic viscosity as $D_i=\nu/Sch$. This definition is enabled only when the data "Multi_Species_Mixture_Law_for_Mass_Diffusion_Enabled = .false." (coming from the namelist "Fluid_Properties".    * The Schmidt number $Sch$ is used to define the diffusion coefficient of the species from the kinematic viscosity as $D_i=\nu/Sch$. This definition is enabled only when the data "Multi_Species_Mixture_Law_for_Mass_Diffusion_Enabled = .false." (coming from the namelist "Fluid_Properties".
  
-=== Electric_Charge  (type = real===+==== Electric_Charge ==== 
 +   * type : real value 
 +   * Electric charge of the ionized species in electronic unit 
 +   * Used only if chemical reactions are implied 
 + 
 +==== Lennard_Jones_Diameter ==== 
 +   * type : real value 
 +   * Diameter of Lennard-Jones (m)
  
 +==== Lennard_Jones_Potential  ====
 +   * type : real value
 +   * Potential of Lennard-Jones (dimensionless)
  
-=== Lennard_Jones_Diameter (type = real) === 
  
-=== Lennard_Jones_Potential (type real) === +==== Thermochemical_Properties_Coefficients ==== 
-=== Lennard_Jones_Potential (type real) === +   * type real array - size array (7,2
-=== Thermochemical_Properties_Coefficients (type = real===+   * These coefficients are used to define some physical quantities such as enthalpy, entropy, heat capacity, free enthalpy of species in respect with the temperature. 
 +   * This data setup is an array of size (7,2) , The first dimension corresponds to the number of coefficients considered (here 7and the second to the number of temperature ranges considered (here 2). 
 +     * The 1st range of T is  300K ---> 1000K 
 +     * The 2nd range of T is 1000K ---> 5000K 
 +   * Used only if chemical reactions are implied
  
-=== End_of_Data_Block (typeboolean) ===+==== End_of_Data_Block ==== 
 +   * type : boolean value 
 +   * Specify the end of the data setup constituted by one or several namelist "Species_Properties".
sunfluidh/species_properties_namelist.txt · Dernière modification : 2016/11/28 17:40 de yann

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