Sr. Aerodynamics Engineer, Modeling and Simulation at Archer

San Jose, California, United States

Archer Logo
Not SpecifiedCompensation
Senior (5 to 8 years)Experience Level
Full TimeJob Type
UnknownVisa
AerospaceIndustries

Requirements

  • BS / MS / PhD in Aerospace Engineering or a related field
  • 4+ years of experience with BS, or 3+ years of experience with MS, or 1+ years of experience with PhD modeling rotorcraft, tiltrotor, eVTOL aerodynamics at full-vehicle level
  • Strong understanding of fundamentals of fixed-wing and rotorcraft aerodynamics, performance, stability & control
  • Experience in eVTOL and/or multicopter vehicle aerodynamics design and analysis, including 6 DoF vehicle trimming and trajectory optimization
  • Experience with gradient-based and gradient-free optimization techniques
  • Experience with surrogate modeling techniques (like Kriging methods) and statistical analysis
  • Experience with experimental data processing and reduction techniques
  • Proficiency in Python programming
  • Experience with software development, object-oriented, version control best practices, as well as Git, CICD, Conda
  • Excellent work planning and issue resolution skills
  • Strong technical, written, and verbal communication skills
  • Ability to work in groups and individually
  • Experience in a fast-paced design environment

Responsibilities

  • Perform low/mid/high fidelity aerodynamic simulations of Archer eVTOL aircraft
  • Develop linear/non-linear aerodynamic models to predict aircraft behavior and performance throughout the flight envelope
  • Analyze experimental data (either from flight test or wind tunnel) to identify sources of model errors, validate, and improve aerodynamic models of the vehicle
  • Develop efficient methods to feed flight test data back into aerodynamic simulation models of various fidelity and complexity
  • Contribute to the development of Archer aerodynamic software stack, improving methods and workflows
  • Coordinate with other cross-functional teams and pilots for flight simulator aerodynamic modeling updates and issue resolution

Skills

Aerodynamic Simulations
Aerodynamic Modeling
eVTOL Aerodynamics
Rotorcraft Aerodynamics
Tiltrotor Aerodynamics
Wind Tunnel Analysis
Flight Test Data Analysis
Stability and Control
6 DoF Vehicle Trimming
Trajectory Optimization

Archer

Designs and develops electric vertical takeoff aircraft

About Archer

Archer designs and develops electric vertical takeoff and landing (eVTOL) aircraft aimed at transforming urban transportation. Their aircraft operate by taking off and landing vertically, which allows them to navigate congested city environments efficiently. Archer targets urban commuters, city planners, and transportation networks, offering eco-friendly solutions to improve urban mobility. Unlike traditional transportation methods, Archer's eVTOLs provide a sustainable alternative that reduces environmental impact. The company generates revenue through the sale of its aircraft and may also offer air taxi services in the future. Archer's goal is to lead the shift towards sustainable air mobility, making urban commuting more efficient and environmentally friendly.

Palo Alto, CaliforniaHeadquarters
2020Year Founded
$637.8MTotal Funding
IPOCompany Stage
Automotive & TransportationIndustries
1,001-5,000Employees

Benefits

Performance Bonus

Risks

Regulatory challenges from FAA and DOT may delay operational plans.
Increased competition from companies like Joby Aviation could impact market share.
Reliance on strategic partnerships poses risks if expectations are not met.

Differentiation

Archer focuses on sustainable urban air mobility with all-electric eVTOL aircraft.
The company targets urban commuters with eco-friendly, time-saving air taxi services.
Archer's strategic partnerships enhance its market reach and operational capabilities.

Upsides

Archer secured $430M funding, strengthening its financial position for growth.
FAA approval for LA air taxi services positions Archer for urban mobility leadership.
Planned LA air mobility network could significantly reduce commuter travel times.

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