Conjugate Heat Transfer
External air cooling of pipe components
Adjust inlet velocity and pipe conductivity to predict velocity, pressure and temperature around two pipe components with a fixed volumetric heat source; internal liquid cooling is excluded.
Published scope
The inputs, geometry and outputs below follow the registered public case. Published verification applies only to the stated conditions. Service availability requires a live request.
Bilinear Condition Response Surface
A cooling circuit combines fluid transport and solid conduction, and inlet-condition changes affect temperatures and heat transfer along the circuit.
The case jointly predicts coolant-flow and temperature results for rapid evaluation of conjugate heat-transfer conditions.
- Geometry
- Coolant-circuit hose and pipe assembly
- Geometry scope
- same_geometry_only
Adjustable inputs
| Input | Range | Default |
|---|---|---|
| Inlet velocity | 0.7 – 1.3 m/s | 1.0 |
| Pipe thermal conductivity | 160.0 – 240.0 W/(m·K) | 200.0 |
Output fields
- Fluid velocity, pressure and temperature: Velocity Magnitude, Pressure, Temperature
- Solid temperature: Temperature
Registered verification
- registered_status
- passed
- summary
- Independent same-point validation and pre-frozen blind holdout comparisons passed inside the registered condition rectangle.
- registered_comparisons
- reference: Fluent same-point validation; status: passed; parameters: inlet_velocity_m_per_s: 1.0; pipe_thermal_conductivity_w_per_m_k: 200.0; sample_count: 68207; reference: Fluent same-point blind holdout; status: passed; parameters: inlet_velocity_m_per_s: 0.95; pipe_thermal_conductivity_w_per_m_k: 220.0; sample_count: 68207
Recorded workflow evidence
- Project opening
- PASS
- Save and reopen
- PASS
- Training
- PASS
- Prediction
- PASS
- Independent accuracy
- PASS
- Portable validation
- PASS
These are recorded checks; they do not establish live service availability or accuracy for every new request.