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Draft. This manual is new and still growing. If something here does not match what you see in the software, the software is right — tell us and we will fix the page.

Acoustic material

Where it is

Not a setup-tree node. Embedded in the application.

Controls

MATERIAL

Material

  • Control: choice (ComboRow)
  • Shown when: !root.thermoviscous

Browse…

  • Control: action (ToolButton2)

Density ρ

  • Control: value (ValueField)
  • Unit: kg/m³
  • Value modes: none (plain entry)

Sets the impedance ρc together with the sound speed below, which is what turns a driven velocity into a pressure.

Sound speed c

  • Control: value (ValueField)
  • Unit: m/s
  • Value modes: none (plain entry)

343 in air at 20 °C, 1481 in water. Every wavelength and every resonance in the answer scales with this number directly.

THERMOVISCOUS PROPERTIES

Kinematic viscosity ν

  • Control: value (ValueField)
  • Unit: m²/s
  • Value modes: none (plain entry)
  • Shown when: root.thermoviscous

Times the density, this is the dynamic viscosity Elmer's solver actually reads.

Bulk viscosity ζ

  • Control: value (ValueField)
  • Unit: Pa·s
  • Value modes: none (plain entry)
  • Shown when: root.thermoviscous

Rarely published. Left at zero assumes the Stokes hypothesis, the ordinary assumption in its absence - not that the material has none.

Thermal conductivity k

  • Control: value (ValueField)
  • Unit: W/m/K
  • Value modes: none (plain entry)
  • Shown when: root.thermoviscous

Specific heat Cp

  • Control: value (ValueField)
  • Unit: J/kg/K
  • Value modes: none (plain entry)
  • Shown when: root.thermoviscous

At constant pressure, as every table publishes it. Elmer's Material block wants Cv; the deck divides by the ratio below.

Specific heat ratio γ

  • Control: value (ValueField)
  • Value modes: none (plain entry)
  • Shown when: root.thermoviscous

Cp/Cv. 1.4 for a diatomic gas like air, 1.67 for a monatomic one like helium or argon.

Reference temperature

  • Control: value (ValueField)
  • Unit: K
  • Value modes: none (plain entry)
  • Shown when: root.thermoviscous

The equilibrium state the small-amplitude disturbance is linearized about - 293.15 K is 20 °C.

Problems reported against this step

The application reports no problems against this step.


marks a value the application computes at run time, so the source carries no fixed text for it.