As a Lead Engineer, you’ll play a pivotal role in driving innovation and solving complex challenges for commercial aircraft engine components. You’ll lead initiatives in cross-functional teams to develop cutting-edge strategies and processes for LEAP Fleet Management, leveraging advanced analytics to make a real-world impact on the aviation industry.
This is your chance to work on next-generation technology, collaborate with industry experts, and contribute to the safety, efficiency, and sustainability of flight.
Job Description
Site Overview
Established in 2000, the John F. Welch Technology Center (JFWTC) in Bengaluru is our multidisciplinary research and engineering center. Engineers and scientists at JFWTC have contributed to hundreds of aviation patents, pioneering breakthroughs in engine technologies, advanced materials, and additive manufacturing.
Role Overview
Lead impactful projects, solve real problems: Analyze and evaluate engine operational severity, support root cause investigations, and develop innovative solutions to predict and prevent future occurrences through creative and proactive problem-solving
Drive innovation: Create and execute strategies that push the boundaries of fleet management using physics and advanced data-driven analytics.
Collaborate and communicate: Work closely with cross-functional teams, share your findings in technical and program reviews, and communicate project updates to stakeholders across all levels of the organization.
Document and deliver: Ensure technical data is properly documented and aligned with engineering policies and procedures.
Ideal Candidate
We’re seeking a passionate, forward-thinking engineer who thrives in a collaborative environment and is excited to make a difference in the aviation industry.
Required Qualifications
Education: Bachelor’s Degree in Engineering, Statistics, Machine Learning, or a related field.
Experience: 6+ years of experience in engineering, with at least 3 years focused on aircraft engines, turbomachinery dynamics, performance, mechanical design, or engineering tools.
Technical Skills: Proficiency in Python programming and a strong understanding of engineering technology and tools.
Problem-Solving: Exceptional design creativity and analytical skills to tackle complex challenges.
Communication: Ability to effectively share ideas and insights across all levels of the organization, both internally and externally.
Desired Qualifications
Advanced degree (Master’s or Ph.D.) in Engineering.
Expertise in physics-based multi-disciplinary modeling of failures using engineering tools.
Familiarity with aircraft flight operations and engine performance.
Experience with data-driven models, including statistics, reliability, probability, and data mining techniques.
Hands-on experience with data quality, including fielded engine data, environmental data, full flight data systems, or test cell data.
Proficiency in R, SQL, Spotfire, and Python for dashboard creation and implementation.
Lean Six Sigma certification (Green or Black Belt).
Humble: respectful, receptive, agile, eager to learn
Transparent: shares critical information, speaks with candor, contributes constructively
Problem solver: analytical-minded, challenges existing processes, critical thinker.
At GE Aerospace, we have a relentless dedication to the future of safe and more sustainable flight and believe in our talented people to make it happen. Here, you will have the opportunity to work on really cool things with really smart and collaborative people. Together, we will mobilize a new era of growth in aerospace and defense. Where others stop, we accelerate.
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