I will perform CFD aerodynamic analysis of your propeller, rotor or axial fan
About this service
I will perform a professional CFD aerodynamic analysis of an existing propeller, rotor or axial fan design.
The analysis can include thrust, torque, power and efficiency prediction, pressure and velocity fields, blade loading, tip-flow and tip-vortex evaluation, local Mach number distribution, and identification of aerodynamic losses.
I have more than 25 years of experience in aerodynamics and aircraft propeller design and use my own high-fidelity CFD tools together with engineering methods such as BEMT for rotating-flow applications.
The service is suitable for propellers, UAV/VTOL rotors, axial fans, ducted fans and similar rotating aerodynamic systems.
Before starting the CFD analysis, I will review the available geometry, operating conditions and required outputs to confirm that the proposed analysis is appropriate for your application.
Typical required inputs:
• 3D geometry (STEP/IGES or similar)
• RPM / rotational speed
• inlet or flight velocity
• air properties / operating conditions
• required performance targets
Typical deliverables include CFD results, aerodynamic performance data, flow-field visualization and engineering recommendations for possible improvements.
The analysis can include thrust, torque, power and efficiency prediction, pressure and velocity fields, blade loading, tip-flow and tip-vortex evaluation, local Mach number distribution, and identification of aerodynamic losses.
I have more than 25 years of experience in aerodynamics and aircraft propeller design and use my own high-fidelity CFD tools together with engineering methods such as BEMT for rotating-flow applications.
The service is suitable for propellers, UAV/VTOL rotors, axial fans, ducted fans and similar rotating aerodynamic systems.
Before starting the CFD analysis, I will review the available geometry, operating conditions and required outputs to confirm that the proposed analysis is appropriate for your application.
Typical required inputs:
• 3D geometry (STEP/IGES or similar)
• RPM / rotational speed
• inlet or flight velocity
• air properties / operating conditions
• required performance targets
Typical deliverables include CFD results, aerodynamic performance data, flow-field visualization and engineering recommendations for possible improvements.
I will perform a professional CFD aerodynamic analysis of an existing propeller, rotor or axial fan design.
The analysis can include thrust, torque, power and efficiency prediction, pressure and velocity fields, blade loading, tip-flow and tip-vortex evaluation, local Mach number distribution, and identification of aerodynamic losses.
I have more than 25 years of experience in aerodynamics and aircraft propeller design and use my own high-fidelity CFD tools together with engineering methods such as BEMT for rotating-flow applications.
The service is suitable for propellers, UAV/VTOL rotors, axial fans, ducted fans and similar rotating aerodynamic systems.
Before starting the CFD analysis, I will review the available geometry, operating conditions and required outputs to confirm that the proposed analysis is appropriate for your application.
Typical required inputs:
• 3D geometry (STEP/IGES or similar)
• RPM / rotational speed
• inlet or flight velocity
• air properties / operating conditions
• required performance targets
Typical deliverables include CFD results, aerodynamic performance data, flow-field visualization and engineering recommendations for possible improvements.
The analysis can include thrust, torque, power and efficiency prediction, pressure and velocity fields, blade loading, tip-flow and tip-vortex evaluation, local Mach number distribution, and identification of aerodynamic losses.
I have more than 25 years of experience in aerodynamics and aircraft propeller design and use my own high-fidelity CFD tools together with engineering methods such as BEMT for rotating-flow applications.
The service is suitable for propellers, UAV/VTOL rotors, axial fans, ducted fans and similar rotating aerodynamic systems.
Before starting the CFD analysis, I will review the available geometry, operating conditions and required outputs to confirm that the proposed analysis is appropriate for your application.
Typical required inputs:
• 3D geometry (STEP/IGES or similar)
• RPM / rotational speed
• inlet or flight velocity
• air properties / operating conditions
• required performance targets
Typical deliverables include CFD results, aerodynamic performance data, flow-field visualization and engineering recommendations for possible improvements.
I will perform a professional CFD aerodynamic analysis of an existing propeller, rotor or axial fan design.
The analysis can include thrust, torque, power and efficiency prediction, pressure and velocity fields, blade loading, tip-flow and tip-vortex evaluation, local Mach number distribution, and identification of aerodynamic losses.
I have more than 25 years of experience in aerodynamics and a... read more
The analysis can include thrust, torque, power and efficiency prediction, pressure and velocity fields, blade loading, tip-flow and tip-vortex evaluation, local Mach number distribution, and identification of aerodynamic losses.
I have more than 25 years of experience in aerodynamics and a... read more
I will perform a professional CFD aerodynamic analysis of an existing propeller, rotor or axial fan design.
The analysis can include thrust, torque, power and efficiency prediction, pressure and velocity fields, blade loading, tip-flow and tip-vortex evaluation, local Mach number distribution, and identification of aerodynamic losses.
I have more than 25 years of experience in aerodynamics and aircraft propeller design and use my own high-fidelity CFD tools together with engineering methods such as BEMT for rotating-flow applications.
The service is suitable for propellers, UAV/VTOL rotors, axial fans, ducted fans and similar rotating aerodynamic systems.
Before starting the CFD analysis, I will review the available geometry, operating conditions and required outputs to confirm that the proposed analysis is appropriate for your application.
Typical required inputs:
• 3D geometry (STEP/IGES or similar)
• RPM / rotational speed
• inlet or flight velocity
• air properties / operating conditions
• required performance targets
Typical deliverables include CFD results, aerodynamic performance data, flow-field visualization and engineering recommendations for possible improvements. read less
The analysis can include thrust, torque, power and efficiency prediction, pressure and velocity fields, blade loading, tip-flow and tip-vortex evaluation, local Mach number distribution, and identification of aerodynamic losses.
I have more than 25 years of experience in aerodynamics and aircraft propeller design and use my own high-fidelity CFD tools together with engineering methods such as BEMT for rotating-flow applications.
The service is suitable for propellers, UAV/VTOL rotors, axial fans, ducted fans and similar rotating aerodynamic systems.
Before starting the CFD analysis, I will review the available geometry, operating conditions and required outputs to confirm that the proposed analysis is appropriate for your application.
Typical required inputs:
• 3D geometry (STEP/IGES or similar)
• RPM / rotational speed
• inlet or flight velocity
• air properties / operating conditions
• required performance targets
Typical deliverables include CFD results, aerodynamic performance data, flow-field visualization and engineering recommendations for possible improvements. read less
Service offer categories
Aerospace Engineering
Computational Fluid Dynamics
Mechanical Engineering
Software & skills
3D Design
3D Engineering
CFD Simulation Engineering
Computation Fluid Dynamics
Engineering Analysis
Flow Simulation Analysis
+3 more
This service includes
| Service tiers | Simple $400 | Standard $1,200 | Advanced $2,100 |
|---|---|---|---|
| Summary | CFD Design Review | CFD Performance Analysis | Detailed CFD & Optimization Review |
| Details | Engineering review of one existing propeller, rotor or axial fan geometry. Assessment of geometry, operating conditions and expected aerodynamic issues. Includes preliminary recommendations and definition of the most appropriate CFD analysis. | CFD analysis of one existing propeller, rotor or axial fan geometry at one operating point. Includes thrust, torque, power and efficiency evaluation, pressure and velocity fields, blade loading, tip-flow analysis and engineering assessment of aerodynamic losses. | Detailed CFD analysis of one propeller, rotor or axial fan design, up to 3 operating points, thrust, torque, power, efficiency, blade loading, pressure and velocity fields, tip-flow and local Mach number analysis. Includes identification of aerodynamic losses and engineering recommendations for blade or rotor optimization. |
| Delivery time | 3 days | 8 days | 14 days |
| Number of revisions | 0 | 1 | 1 |
Member since
August 2026
Languages
English
Avg. response time
1 hour
CFD & aero Engeneering
I am an aerospace engineer with more than 25 years of experience in aerodynamics, CFD, and aircraft propeller and rotor design.
I specialize in aerodynamic analysis and optimization of propellers, axial fans, rotors, UAV/VTOL propulsion systems, and rotating-flow applications. I develop and use my own high-fidelity CFD tools together with BEMT and numerical optimization methods for blade and airf... read more
I specialize in aerodynamic analysis and optimization of propellers, axial fans, rotors, UAV/VTOL propulsion systems, and rotating-flow applications. I develop and use my own high-fidelity CFD tools together with BEMT and numerical optimization methods for blade and airf... read more
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