Senior Engineer, Compressor Mechanical
POWERTECH
Date: 6 days ago
City: Abu Dhabi
Contract type: Full time

About POWERTECH
POWERTECH is a center of excellence for propulsion technologies, specializing in the design, engineering, and manufacturing of combustion engines, expendable turbojet engines, and turbofan engines for aerospace, defence, and autonomous applications. Our solutions support fixed- and rotary-wing UAVs as well as other advanced platforms, driving innovation and performance in aerospace propulsion.
Job Overview
The Senior Mechanical Engineer – Compressor Systems will lead the mechanical development of compressor hardware across multiple stages, focusing on delivering robust, high-performance, and manufacturable solutions for both low- and high-pressure compressor (LPC/HPC) modules in modern turbofan engines.
This role includes design responsibility for rotating and static components, collaboration with cross-functional teams, and lifecycle support from concept through production and in-service maturity. Candidates must demonstrate expertise in turbomachinery mechanics, structural integrity, and advanced aerospace propulsion engineering.
Key Responsibilities
Mechanical Design & Development
Lead design efforts for key compressor components, including:
Ensure design compliance with structural, vibratory, thermal, and aerodynamic requirements across all mission phases.
Structural Analysis & Optimization
Collaborate with structural and lifing teams to assess:
Manufacturing & Producibility
Apply Design for Manufacturability (DFM) principles for components produced via forging, casting, machining, and additive manufacturing.
Define tolerances, surface treatments, coatings, and interface specifications.
Coordinate with internal manufacturing teams and suppliers to resolve fabrication issues, tooling challenges, and cost targets.
Participate in manufacturing readiness reviews, root cause analysis (RCA), and design iteration loops.
Documentation & Certification
Generate detailed design documentation, including:
Cross-Functional Collaboration
Collaborate closely with:
Innovation & Technology Development
Drive development and adoption of advanced mechanical features such as:
Qualifications & Experience
POWERTECH is a center of excellence for propulsion technologies, specializing in the design, engineering, and manufacturing of combustion engines, expendable turbojet engines, and turbofan engines for aerospace, defence, and autonomous applications. Our solutions support fixed- and rotary-wing UAVs as well as other advanced platforms, driving innovation and performance in aerospace propulsion.
Job Overview
The Senior Mechanical Engineer – Compressor Systems will lead the mechanical development of compressor hardware across multiple stages, focusing on delivering robust, high-performance, and manufacturable solutions for both low- and high-pressure compressor (LPC/HPC) modules in modern turbofan engines.
This role includes design responsibility for rotating and static components, collaboration with cross-functional teams, and lifecycle support from concept through production and in-service maturity. Candidates must demonstrate expertise in turbomachinery mechanics, structural integrity, and advanced aerospace propulsion engineering.
Key Responsibilities
Mechanical Design & Development
Lead design efforts for key compressor components, including:
- Rotor discs, drums, and spools
- Blades and vanes (airfoils, dovetails, roots, platforms)
- Cases, spacers, shafts, and retention hardware
- Seal segments, shrouds, and tip clearance features
Ensure design compliance with structural, vibratory, thermal, and aerodynamic requirements across all mission phases.
Structural Analysis & Optimization
Collaborate with structural and lifing teams to assess:
- Static stress, fatigue (LCF/HCF), creep, and fracture tolerance
- Modal and harmonic response of rotating and stationary components
- Tip rub, blade flutter, and structural damping behavior
Manufacturing & Producibility
Apply Design for Manufacturability (DFM) principles for components produced via forging, casting, machining, and additive manufacturing.
Define tolerances, surface treatments, coatings, and interface specifications.
Coordinate with internal manufacturing teams and suppliers to resolve fabrication issues, tooling challenges, and cost targets.
Participate in manufacturing readiness reviews, root cause analysis (RCA), and design iteration loops.
Documentation & Certification
Generate detailed design documentation, including:
- Component definition drawings, stack-ups, and specifications
- Engineering reports for internal reviews and customer/stakeholder presentations
- Certification support packages for FAA, EASA, and military authorities
Cross-Functional Collaboration
Collaborate closely with:
- Aerothermal engineers on flowpath integration and stage matching
- Structural and dynamics teams on safe design margins
- Materials and process engineers for alloy selection, coatings, and durability
- Test and validation teams for rig and engine-level test execution
Innovation & Technology Development
Drive development and adoption of advanced mechanical features such as:
- Integrally bladed rotors (IBRs/blisks)
- Lightweight structures using advanced alloys or composites
- Non-traditional tip clearance and blade retention methods
Qualifications & Experience
- Bachelor’s degree in Mechanical or Aerospace Engineering required; Master’s preferred, with concentration in turbomachinery or structural mechanics
- 7–10 years of mechanical design experience in turbomachinery, focusing on compressor components
- Demonstrated success through full development lifecycle: concept, design, validation, production, and field support
- Expertise in CAD modeling tools (CATIA, NX)
- Familiarity with FEA tools and structural validation methods (ANSYS, Abaqus)
- Strong understanding of rotating machinery dynamics, vibration, and stress behavior
- Knowledge of FAA/EASA certification standards and aerospace design best practices
- Proficiency in GD&T, tolerance analysis, and technical documentation
- Experience with high-speed rotating components and complex assemblies
- Familiarity with advanced cooling methods, rub-tolerant seals, or compressor surge management
- Knowledge of additive manufacturing for rotating hardware or seals
- Understanding of digital thread, PLM systems, or model-based engineering
- Strong mechanical intuition and engineering judgment
- Proactive problem-solver balancing performance, reliability, and manufacturability
- Excellent collaboration skills in multi-disciplinary environments
- Detail-focused, quality-driven, and responsive to fast-paced development cycles
- Passion for innovation and continuous technical growth
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