I will design and develop UAV propellers using BEMT and CFD analysis
About this service
I provide end-to-end propeller development for UAV and drone propulsion systems, from preliminary aerodynamic sizing to CFD validation and performance evaluation.
You will receive:
✅ Propeller sizing based on thrust, RPM, airspeed and power requirements
✅ BEMT-based propeller design and performance prediction
✅ Blade geometry development including chord and twist distribution
✅ Airfoil selection for different blade sections
✅ Pitch, diameter and blade-count trade-off
✅ CFD validation of BEMT predictions
✅ Thrust, torque, power and propulsive efficiency
✅ Blade pressure and aerodynamic loading distribution
✅ Propeller wake and induced-flow analysis
✅ Performance maps across RPM and airspeed
✅ Comparison of different propeller configurations
✅ Recommendations for propeller selection or further optimization
You will receive:
✅ Propeller sizing based on thrust, RPM, airspeed and power requirements
✅ BEMT-based propeller design and performance prediction
✅ Blade geometry development including chord and twist distribution
✅ Airfoil selection for different blade sections
✅ Pitch, diameter and blade-count trade-off
✅ CFD validation of BEMT predictions
✅ Thrust, torque, power and propulsive efficiency
✅ Blade pressure and aerodynamic loading distribution
✅ Propeller wake and induced-flow analysis
✅ Performance maps across RPM and airspeed
✅ Comparison of different propeller configurations
✅ Recommendations for propeller selection or further optimization
I provide end-to-end propeller development for UAV and drone propulsion systems, from preliminary aerodynamic sizing to CFD validation and performance evaluation.
You will receive:
✅ Propeller sizing based on thrust, RPM, airspeed and power requirements
✅ BEMT-based propeller design and performance prediction
✅ Blade geometry development including chord and twist distribution
✅ Airfoil selection for different blade sections
✅ Pitch, diameter and blade-count trade-off
✅ CFD validation of BEMT predictions
✅ Thrust, torque, power and propulsive efficiency
✅ Blade pressure and aerodynamic loading distribution
✅ Propeller wake and induced-flow analysis
✅ Performance maps across RPM and airspeed
✅ Comparison of different propeller configurations
✅ Recommendations for propeller selection or further optimization
You will receive:
✅ Propeller sizing based on thrust, RPM, airspeed and power requirements
✅ BEMT-based propeller design and performance prediction
✅ Blade geometry development including chord and twist distribution
✅ Airfoil selection for different blade sections
✅ Pitch, diameter and blade-count trade-off
✅ CFD validation of BEMT predictions
✅ Thrust, torque, power and propulsive efficiency
✅ Blade pressure and aerodynamic loading distribution
✅ Propeller wake and induced-flow analysis
✅ Performance maps across RPM and airspeed
✅ Comparison of different propeller configurations
✅ Recommendations for propeller selection or further optimization
I provide end-to-end propeller development for UAV and drone propulsion systems, from preliminary aerodynamic sizing to CFD validation and performance evaluation.
You will receive:
✅ Propeller sizing based on thrust, RPM, airspeed and power requirements
✅ BEMT-based propeller design and performance prediction
✅ Blade geometry development including chord and twist distribution
✅ Airfoil select... read more
You will receive:
✅ Propeller sizing based on thrust, RPM, airspeed and power requirements
✅ BEMT-based propeller design and performance prediction
✅ Blade geometry development including chord and twist distribution
✅ Airfoil select... read more
I provide end-to-end propeller development for UAV and drone propulsion systems, from preliminary aerodynamic sizing to CFD validation and performance evaluation.
You will receive:
✅ Propeller sizing based on thrust, RPM, airspeed and power requirements
✅ BEMT-based propeller design and performance prediction
✅ Blade geometry development including chord and twist distribution
✅ Airfoil selection for different blade sections
✅ Pitch, diameter and blade-count trade-off
✅ CFD validation of BEMT predictions
✅ Thrust, torque, power and propulsive efficiency
✅ Blade pressure and aerodynamic loading distribution
✅ Propeller wake and induced-flow analysis
✅ Performance maps across RPM and airspeed
✅ Comparison of different propeller configurations
✅ Recommendations for propeller selection or further optimization read less
You will receive:
✅ Propeller sizing based on thrust, RPM, airspeed and power requirements
✅ BEMT-based propeller design and performance prediction
✅ Blade geometry development including chord and twist distribution
✅ Airfoil selection for different blade sections
✅ Pitch, diameter and blade-count trade-off
✅ CFD validation of BEMT predictions
✅ Thrust, torque, power and propulsive efficiency
✅ Blade pressure and aerodynamic loading distribution
✅ Propeller wake and induced-flow analysis
✅ Performance maps across RPM and airspeed
✅ Comparison of different propeller configurations
✅ Recommendations for propeller selection or further optimization read less
Service offer categories
Product Engineering Services
Drone Design
Computational Fluid Dynamics
Software & skills
ANSYS Fluent
Aerodynamic Design
Aeronautical Engineering
Aerospace Design
Aerospace Engineering
CFD Simulations
Drone Design
Mechanical Engineering
SolidWorks
XFLR5
+7 more
Member since
August 2026
Languages
English
Avg. response time
1 hour
Aerospace & Mechanical Engineer | CFD | FEA | UAV Design
I am an Aerospace & Mechanical Engineer specializing in CFD, FEA, thermal analysis, aerodynamics, UAV design, and engineering simulation.
I provide engineering analysis and design support to startups, OEMs, researchers, and product-development teams.
CFD: Internal & External Flow, Turbulence, Mixing, Multiphase Flow, DPM/Particle Tracking, Pressure Drop, Flow Distribution, Air Purification, HVAC... read more
I provide engineering analysis and design support to startups, OEMs, researchers, and product-development teams.
CFD: Internal & External Flow, Turbulence, Mixing, Multiphase Flow, DPM/Particle Tracking, Pressure Drop, Flow Distribution, Air Purification, HVAC... read more
Questions and answers
Yes. I can start from your motor, RPM, power, thrust, airspeed and aircraft requirements, develop the propeller using BEMT, and validate the design using CFD.
Yes. I can perform CFD analysis of your existing propeller to calculate thrust, torque, power consumption, efficiency, blade loading, pressure distribution and wake characteristics at your specified RPM and flight conditions.
I can handle the complete aerodynamic development, from preliminary BEMT sizing and blade geometry to CFD validation and performance comparison.
Cad Crowd Billing Security policy
Service quality is protected by Cad Crowd Billing Security policy.
More from Rohit B.
More similar services
See related services
- 3D Design services
- 3D Modeling services
- CAD Design services
- 2D & 3D Design services
- 3D CAD Design services
- 2D & 3D Modeling services
- CAD Modeling services
- 3D CAD Modeling services
- Engineering Design services
- Drafting services
- AutoCAD services
- 3D Models services
- Mechanical Design services
- Mechanical 3D Design services
- Design for Manufacturing services
- 2D Drawing services
- Product Design services
- 2D AutoCAD services
- Rendering services
- 3D Rendering services
- SolidWorks services
- Mechanical Engineering services
- 3D Solidworks services
- Manufacturing Drawings services
- 2D/3D AutoCAD services
- Assembly Design services
- Concept Design services
- 2D & 3D Modeling Solidworks services
- CAD Assembly services
- Design Engineer services
- 3D Printing Design services
- Industrial Design services
- Mechanical Engineer services
- AutoCAD Mechanical services
- Product Development services
- Product Design and Development services