STAR-CCM+ Thermal Management + HVAC + Experimental Data Calibration + Temperature Field Calibration
Budget: $10 – $30 USD
STAR-CCM+ Thermal Management + HVAC + Experimental Data Calibration + Temperature Field Calibration
An existing STAR-CCM+ 2510 project file (.sim) is available. The geometry model, fluid domain, and solid domain have already been created.
The scope of work includes:
• Simulation of the solar radiation heating process
• Simulation of the cooling process after turning on the air conditioner
• HVAC thermal environment analysis
• Temperature field calibration
• Experimental data calibration
The following are currently available:
• STAR-CCM+ 2510 .sim file
• Experimental temperature data
• Measured wind speed data
• Established temperature monitoring points (head, hands, and feet)
• Completed geometry model, fluid domain, and solid domain
Current issue:
According to the experimental data, the foot temperature remains almost unchanged during the first 200 seconds.
However, the current STAR-CCM+ simulation results show that the foot temperature increases at nearly the same rate as the head temperature.
The existing model needs to be analyzed to identify the cause of this issue and make the necessary corrections.
Scope of work:
1. Review the existing STAR-CCM+ model
2. Analyze the cause of the abnormal increase in foot temperature
3. Check the thermal management settings
4. Check the HVAC cooling boundary conditions
5. Check the solar radiation settings
6. Check the flow field and temperature field distributions
7. Modify the model if necessary
8. Calibrate the simulation against the experimental data
9. Calibrate the temperatures at the head, hands, and feet
Target:
The errors between the simulated and experimental temperatures at the head, hands, and feet should be controlled within 10%.
Deliverables:
• Modified STAR-CCM+ project file
• Explanation of the root cause of the issue
• Description of the modifications made
• Comparison curves between simulation and experimental data
• Final runnable project file
Required skills:
• STAR-CCM+
• Thermal Management
• HVAC
• CFD
• Heat Transfer
• Solar Radiation
• Temperature Field Analysis
• Experimental Data Calibration
When bidding, please provide:
• Whether you have completed similar Thermal Management/HVAC projects
• Whether you have experience with experimental data calibration
• Estimated completion time
• Fixed-price quotation
In addition, please briefly explain:
What factors could cause the foot temperature in the simulation to increase significantly faster than in the experimental results?
The delivery deadline for this task is June 13, 2026.
The project is being posted on June 6, 2026, and there is one week available for completion.
An existing STAR-CCM+ 2510 project file (.sim) is available. The geometry model, fluid domain, and solid domain have already been created.
The scope of work includes:
• Simulation of the solar radiation heating process
• Simulation of the cooling process after turning on the air conditioner
• HVAC thermal environment analysis
• Temperature field calibration
• Experimental data calibration
The following are currently available:
• STAR-CCM+ 2510 .sim file
• Experimental temperature data
• Measured wind speed data
• Established temperature monitoring points (head, hands, and feet)
• Completed geometry model, fluid domain, and solid domain
Current issue:
According to the experimental data, the foot temperature remains almost unchanged during the first 200 seconds.
However, the current STAR-CCM+ simulation results show that the foot temperature increases at nearly the same rate as the head temperature.
The existing model needs to be analyzed to identify the cause of this issue and make the necessary corrections.
Scope of work:
1. Review the existing STAR-CCM+ model
2. Analyze the cause of the abnormal increase in foot temperature
3. Check the thermal management settings
4. Check the HVAC cooling boundary conditions
5. Check the solar radiation settings
6. Check the flow field and temperature field distributions
7. Modify the model if necessary
8. Calibrate the simulation against the experimental data
9. Calibrate the temperatures at the head, hands, and feet
Target:
The errors between the simulated and experimental temperatures at the head, hands, and feet should be controlled within 10%.
Deliverables:
• Modified STAR-CCM+ project file
• Explanation of the root cause of the issue
• Description of the modifications made
• Comparison curves between simulation and experimental data
• Final runnable project file
Required skills:
• STAR-CCM+
• Thermal Management
• HVAC
• CFD
• Heat Transfer
• Solar Radiation
• Temperature Field Analysis
• Experimental Data Calibration
When bidding, please provide:
• Whether you have completed similar Thermal Management/HVAC projects
• Whether you have experience with experimental data calibration
• Estimated completion time
• Fixed-price quotation
In addition, please briefly explain:
What factors could cause the foot temperature in the simulation to increase significantly faster than in the experimental results?
The delivery deadline for this task is June 13, 2026.
The project is being posted on June 6, 2026, and there is one week available for completion.
Related categories:
Engineering
Mechanical Engineering
Thermal Analysis
Simulation
Computational Fluid Dynamics
HVAC