Click the example number to see the example page.
|
Number |
Example Title |
Simulation Image |
Setup Conditions |
|
1 |
Temperature Distribution of Two Rods
(Steady-State Analysis) |

|
Steady-state Analysis
Temperature Boundary |
|
2 |
Temperature Distribution of Two Rods
(Transient Analysis) |

|
Transient Analysis
Temperature Boundary |
|
3 |
Block Containing Heating Element (Steady-State Analysis) |

|
Steady-state Analysis
Heat Quantity
Temperature Boundary |
|
4 |
Block Containing Heating Element
(Transient Analysis) |

|
Transient Analysis
Heat Quantity
Temperature Boundary |
|
5 |
Cooling by Natural Convection
(Steady-State Analysis) |

|
Steady-state Analysis
Heat Transfer/Convection Boundary
(Natural Convection)
Temperature Boundary |
|
6 |
Cooling by Natural Convection
(Transient Analysis) |

|
Transient Analysis
Heat Transfer/Convection Boundary
(Natural Convection)
Temperature Boundary |
|
7 |
Cooling by Forced Convection
(Steady-State Analysis) |

|
Steady-state Analysis
Heat Transfer/Convection Boundary
(Coefficient of Heat Transfer) |
|
8 |
Cooling by Forced Convection
(Transient Analysis) |

|
Transient Analysis
Heat Transfer/Convection Boundary
(Coefficient of Heat Transfer) |
|
9 |
Body-to-Body Heat Radiation
(Transient Analysis) |

|
Transient Analysis
Surface-to-Surface Radiation |
|
10 |
Natural Convection with Correction Coefficient Manually Calculated |

|
Steady-state Analysis
Heating
Heat Transfer/Convection boundary
(Natural Convection) |
|
11 |
Blocks Set with Discontinuous Boundary |

|
Steady-state Analysis
Temperature Boundary
Discontinuous Boundary |
|
12 |
Uniform Temperature Boundary Condition |

|
Steady-state Analysis
Temperature Boundary
Uniform Temperature Boundary |
|
13 |
Heat Flux |

|
Steady-state Analysis
Temperature Boundary
Heat Flux Boundary |
|
14 |
Natural Convection with Correction Coefficient Automatically Calculated |

|
Steady-state Analysis
Heating
Heat Transfer/Convection boundary
Natural Convection (Automatic Coefficient Calculation) |
|
15 |
Thermal Resistance Set on Boundary Face |

|
Steady-state Analysis
Temperature Boundary
Thermal Resistance Boundary
Integration of Vector Values
|
|
16 |
Radiation Blocked by a Disc (Steady-State Analysis) |

|
Steady-state Analysis
Surface-to-Surface Radiation |
|
17 |
Temperature-Dependent Heat Source (Transient Analysis) |

|
Transient Analysis
Heat Transfer/Convection boundary
(Coefficient of Heat Transfer)
Heat (Temperature Dependency) |
|
18 |
Restart under Different Boundary Condition |

|
Transient Analysis
Restart Analysis
Boundary Condition Change |
|
19 |
Time-Dependent Heat Source (Transient Analysis) |

|
Transient Analysis
Heat Transfer/Convection boundary
Natural Convection (Automatic Coefficient Calculation)
Heat (Time Dependency) |
|
20 |
Further Analysis with Saved Temperature Data (Transient Analysis) |

|
Transient Analysis
Heat Transfer/Convection boundary
Natural Convection (Automatic Coefficient Calculation)
Initial Temperature
Use distribution data |
|
21 |
Measurement of Thermal Resistance and Heat Flow Rate with Measuring Terminal Boundary |

|
Steady-state Analysis
Heating
Heat Transfer/Convection Boundary
Natural Convection (Automatic Coefficient Calculation)
Ambient Radiation
Measuring Terminal Boundary
Heat flow Rate/Output of Thermal Resistance |
|
22 |
Junction Thermal Resistance of Semiconductor Package |

|
Steady-state Analysis
Heating
Temperature Boundary
Heat Transfer/Convection Boundary
Natural Convection (Automatic Coefficient Calculation)
Ambient Radiation
Measuring Terminal Boundary
Junction - Ambient Thermal Resistance
|
|
23 |
Multilayer Thermal Conductive Sheets |

|
Steady-state Analysis
Temperature Boundary
Multilayer Thermal Conductive Sheet
Heat flow Rate/Output of Thermal Resistance |
|
24 |
Thermal Analysis Using Results (Heat Density) Imported from Magnetic Harmonic Analysis |

|
Steady-state Analysis
Heat Transfer/Convection Boundary
Results Import (Heat Density) |
|
25 |
Periodic Boundary |

|
Steady-state Analysis
Periodic Boundary
Heat Transfer/Convection Boundary |
|
26 |
Composite Material with Cylindrical Anisotropic Thermal Conductivity |

|
Steady-state Analysis
Heat Transfer/Convection Boundary
Use directional distribution |
|
27 |
Radiation Blocked by a Disc (Steady-state Analysis) -Simple Setting- |

|
Steady-state Analysis
Surface-to-Surface Radiation |
|
28 |
Thermal Resistance with Heat Sink (Steady-state Analysis) |

|
Steady-state Analysis
Heat Sink Boundary Condition |
|
29 |
Example 29: Water Cooling (Temperature-Dependent Coefficient of Heat transfer) |

|
Steady-state Analysis
Temperature-Dependent Coefficient of Heat transfer |
|
30 |
Heat Dissipation of IC inside a Case by Natural Convection |

|
Steady-state Analysis
Heat Transfer/Convection Boundary
Natural Convection (Automatic Coefficient Calculation)
Surface-to-Surface Radiation
Automatic Fluid Creation
|