modelInertia
Inertia of the volumetric flow
Extends from Physiolibrary.Fluid.Interfaces.OnePort (Hydraulical OnePort), Physiolibrary.Icons.Inertance.
Information
Inertance I of the simple tube could be calculated as I=ro*l/A, where ro is fuid density, l is tube length and A is tube cross-section area.
Parameters
| Type | Name | Default | Description |
|---|---|---|---|
| Physiolibrary.Types.HydraulicInertance | I | Inertance | |
| Advanced › Performance | |||
| Boolean | EnthalpyNotUsed (from OnePort) | false | |
| Initialization | |||
| Physiolibrary.Types.MassFlowRate | massFlow_start | 0 | Mass flow start value |
Connectors
| Type | Name | Default | Description |
|---|---|---|---|
| FluidPort_a | q_in (from OnePort) | Inflow | |
| FluidPort_b | q_out (from OnePort) | Outflow |
Components
| Type | Name | Default | Description |
|---|---|---|---|
| Modelica.Fluid.System | system (from OnePort) | System wide properties | |
| Physiolibrary.Types.MassFlowRate | massFlowRate (from OnePort) | Mass flow | |
| Physiolibrary.Types.VolumeFlowRate | volumeFlowRate (from OnePort) | Volume flow | |
| Physiolibrary.Types.Pressure | dp (from OnePort) | Pressure gradient | |
| Modelica.Units.SI.Density | density (from OnePort) |
Revisions
2017-2018
Marek Matejak, http://www.physiolib.com