Aeroderivative Performance And Operability Lead Engineer
Talentmate
India
5th February 2026
2602-1975-607
Job Description
Job Description Summary
The Aeroderivative Performance & Operability Engineering team is a critical pillar within the Aeroderivative Engineering organization, operating at the intersection of engineering, commercial, and digital domains. The team covers project execution and model development for aspects related to performance (thermodynamic cycle models) and operability (including emissions, fuel flexibility, and controls).
This role is focused on model development for the LM2500+G4, encompassing the entire lifecycle - method creation , model adjustments, validation, software release, application to both steady state and transient operations. The models will be status-matched with field data to ensure real-world accuracy. This is a systems level role that will require collaboration with a multidisciplinary team to ensure we meet the evolving demands of the business and our customers.
Job Description
Roles and Responsibilities
Lead Model Development Lifecycle: Drive the creation, adjustment, validation, and application of thermodynamic cycle models for aeroderivative gas turbines using NPSS and associated tools.
Develop and Refine Operability Models: Manage the lifecycle for operability models, including emissions, fuel flexibility, and control aspects, ensuring models reflect operational realities.
Test Plan Development & Field Support: Define and develop engineering test plans, supporting field tests to gather data that drives improvements in both performance and operability models.
Field Data Integration & Model Validation: Analyze post-processed field data using data analysis techniques (e.g., data science, statistics, probabilities) to update and status-match models with real-world operational data.
Fuel Flexibility Expertise: Evaluate the use of various fuels (e.g., hydrogen, biofuels) in power plants, determining necessary model adjustments to support fuel-flexible solutions.
Technical Leadership: Act as a performance and operability technical expert for aeroderivative gas turbines, serving as a focal point for coordination with GE Aviation and GE Vernova internal teams.
Data-Driven Analysis: Apply advanced data science methods to evaluate model performance, deliver concise analyses, and present complex findings to leadership.
Process Improvement: Continuously refine team processes, implementing best practices and lessons learned to drive efficiency and innovation.
Tool Development: Develop tools and templates using VBA, Python, NPSS, or other utilities to streamline team operations and enhance problem-solving capabilities.
Required Qualifications
This role requires advanced experience in the Engineering/Technology & Performance Engineering. Knowledge level is comparable to a Bachelors degree from an accredited university or college ( or a high school diploma with relevant experience).
Desired Characteristics
Master’s or PhD in engineering or equivalent fields.
Significant experience in Aeroderivative performance modeling, particularly in data reduction, status matching, and NPSS cycle model development.
Strong programming experience in NPSS, Python, and C.
Deep understanding of gas turbine thermodynamics, controls, emissions, and operability.
Familiarity with gas turbine performance testing including standards such as ASME PTC 22 or ISO 2314.
Understanding of gas turbine combustion and emissions including creation of combustion transfer functions.
Experience with fuel flexibility including high hydrogen and its impact on systems such as performance, emissions, operability, and controls.
Proficiency in data analysis, data science, and probabilistic modeling.
Ability to work effectively in globally distributed teams.
Experience in applying continuous improvement methodologies such as Lean to improve operations.
Demonstrated ability to think critically and creatively to analyze and resolve complex problems.
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