Key Responsibilities
- Technical Leadership
- Lead the design, development, and optimization of power conversion unity system, with primary focus on Stirling engine configurations
- Drive performance improvements in engine efficiency, reliability, and power density for 24/7 operation
- Oversee the integration of heat engines with our proprietary thermal storage systems and power generation infrastructure
- Establish and validate thermodynamic models for engine performance across varying temperature differentials and operating conditions
- System Design & Development
- Design and optimize critical engine components including pistons, cylinders, regenerators, heat exchangers, and linear alternator systems
- Develop innovative solutions for hermetic sealing, working fluid management, and pressure vessel design
- Lead material selection for high-temperature applications, focusing on durability over 30-year operational lifespans
- Create modular engine architectures that enable rapid deployment and scalability
- Manufacturing & Production
- Collaborate with manufacturing teams to transition designs from prototype to mass production
- Establish quality control standards and testing protocols for engine components and assemblies
- Drive design for manufacturability (DFM) initiatives to reduce costs while maintaining performance
- Support domestic supply chain development for critical engine components
- Testing & Validation
- Develop comprehensive test plans for engine performance, durability, reliability and validation testing
- Lead root cause analysis and failure mode investigations
- Establish predictive maintenance protocols and condition monitoring systems
- Oversee field testing and commissioning of engine systems at customer sites
- Team Leadership
- Build and mentor a world-class team of mechanical engineers specializing in heat engines
- Foster cross-functional collaboration with thermal systems, controls, and software engineering teams
- Drive technical decision-making and establish engineering best practices
- Interface with executive leadership to align engine development with company strategy
Required Qualifications
- Education & Experience
- Bachelor's degree in Mechanical Engineering or related field; Master's or PhD preferred
- At least 8+ years of hands-on experience designing, testing, sensors, data acquisition system and engine test cell development.
- Demonstrated expertise in leveraging combination of engine models and analysis-led design for engine hardware development.
- Track record of bringing engine systems from concept through production
- Technical Expertise
- Deep understanding of thermodynamic cycles, particularly Stirling, Otto, and Rankine cycles
- Expertise in heat transfer, fluid dynamics, and thermodynamics.
- Proficiency in engine modeling and simulation tools (SAGE, GT-Power, SIMSCAPE, SIMULINK, ANSYS, or similar)
- Experience with high-temperature materials and thermal management systems, and heat exchanger design.
- Knowledge of power generation systems and grid integration
- Skills & Competencies
- Strong analytical and problem-solving abilities with focus on first-principles thinking
- Experience with Design of Experiments (DOE) and statistical analysis methods
- Proficiency in CAD software (SolidWorks, CATIA, or similar)
- Understanding of manufacturing processes including casting, machining, and assembly
- Excellent communication skills with ability to present complex technical concepts clearly
Preferred Qualifications
- Previous experience in renewable energy, concentrated solar power (CSP), or thermal storage systems
- Background in developing engines for stationary power generation applications
- Experience with alternative engines, free-piston stirling engines, kinematic stirling engines, and/or linear alternator systems
- Knowledge of engine control systems and engine power electronics integration
- Track record of patents or publications in reciprocating engine technology
- Experience with modular system design and containerized solutions
- Familiarity with data center power requirements and reliability standards (99.999% uptime)