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hirly last saw it live on 30 September 2026. See similar open roles below, or browse all jobs in San Diego.
Caterpillar
2027 TMP Tech & NPI Entry Level Engineering Rotation - MS/PHD
San Diego, California
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hirly's read of this role
- Seniority
- Entry level
- Country
- US
- Work mode
- On-site / unstated
- First seen by hirly
- 27 Sept 2026
Derived automatically from the posting.
the posting
Career Area:
Job Description:
Your Work Shapes the World at Caterpillar Inc.
When you join Caterpillar, you're joining a global team who cares not just about the work we do – but also about each other. We are the makers, problem solvers, and future world builders who are creating stronger, more sustainable communities. We don't just talk about progress and innovation here – we make it happen, with our customers, where we work and live. Together, we are building a better world, so we can all enjoy living in it.
2027 TMP Tech & NPI Entry Level Engineering Rotation - MS/PHD
The Turbomachinery Technology and New Product Introduction ( NPI) team is seeking passionate, entry level engineers with advanced degrees ( Master ’s or PhD) specializing in gas turbine aerodynamic s , heat transfer, performance , combustion , a dditive m anufacturing t echnology, or mechanical /aerospace engineering bachelor’s degree with a data science M aster/PhD to join our team. Please see job responsibility details for all these different roles below.
To establish a strong foundation, the successful candidate will be a part of an Engineering Rotation program that is a purpose-driven initiative designed to accelerate your development and lay a strong foundation for long-term success . Through immersive, hand s -on rotations, you’ll gain skill s , experience , and networks to become one of the next generation’s most capable and innovative engineers.
During the selection process, candidates are match ed with a core functional department that aligns with their strengths and career aspirations. The program consists of two (2) to three ( 3 ) rotations , each lasting 16-20 weeks , within departments that complement the candidate ’s long- ter m placement . These rotations strengthen enterprise understanding , broaden product knowledge, and support a seamless transition into their engineering career.
Minimum Qualifications :
In the process of obtaining or have obtained a minimum of a Maste r ’ s degree in an accredited engineering program such as M echanical, Aerospace, Chemistry , Materials e tc
Overall GPA of 2.8 on a 4.0 scale.
Applied knowledge of engineering fundamentals.
Experience with problem-solving tasks.
Strong verbal and written communication skills.
Must be able and willing to relocate to San Diego, CA and be in office full time.
G lobal Preferred Qualifications :
Experience (Course work or internship) in turbomachinery concept s
High energy level and sense of urgency.
Demonstrated success in weighing business and technical decisions .
Ability to handle multiple priorities for a variety of tasks.
Previous co-op or Internship experience.
Problem solving skills.
Turbine and Compressor Aerodynamics
Application of Gas Turbine Aerodynamic Principals : Leverage conceptual, preliminary and detailed aerodynamic tools to design and analyze turbine and compressor flowpath components, including airfoils, ducts, diffusers and collectors.
Multidisciplinary Design and Integration: Work closely with other disciplines to ensure that aerodynamic designs meet program requirements for manufacturability, cost, durability and performance .
Simulation and Methods Development: Contribute to the development and maintenance of 1D, 2D, and 3D design and analysis tools that enable aerodynamic and multidisciplinary gas turbine design. Utilize state-of-the-art Computation Fluid Dynamics (CFD) simulations to optimize and design turbine hardware.
Gas Turbine Performance Engineering
Concept and Advanced Thermodynamic Cycle Studies: Conduct studies to develop and calibrate performance predictions for new or upgraded engines and oversee performance during development.
Production Tests and Product Support: Support production tests and product support efforts using performance predictions and data analysis tools.
Software Development and Maintenance: Develop and maintain software used to analyze, predict, and guarantee the performance of Solar’s products.
Critical Services and Software: Provide services and software critical to the success of Turbomachinery Product design, Sales and Applications, Customer Services, Overhaul facilities, and customer sites.
Engine Data Analysis: Analyze engine data from tests to troubleshoot and monitor the aeromechanical behavior and performance of each product line.
Transient Cycle Models: Produce transient cycle models to create advanced AI-based digital twins that will unlock extending service intervals, cycle count capabilities, and increase efficiency through operational flexibility.
Gas Turbine Heat Transfer Design and Analysis
Turbine Component Design: Design the cooling circuits and create thermal models of various components including cooled blades and nozzles, turbine disks, diaphragms, pre - swirler, etc. as part of a cross-functional design team.
Secondary Cooling Flow Management: Distribute the secondary cooling air throughout the engine to provide adequate cooling to the turbine section components by using 1-D flow codes for straightforward flow geometry and CFD for more complex flow situations.
Develop Innovative Design Solutions: Design, analyze and validate creative solutions to reduce cooling flow consumption to enhance engine performance and/or improve durability.
Overall Engine Thermal Management: Provide thermal model predictions through a transient cycle to understand seal and rotor tip behavior as well as overall engine displacement. Support analyses such as heat rejection to the lube oil system and surrounding enclosure ventilation to size and assess ancillary package systems.
Gas Turbine Combustion Engineer
Application of Combustion Fundamental : Leverage Knowledge of chemical kinetics, oscillations, and other combustion system modeling tools and experimental methods employed to optimize emissions, stability, and operational flexibility.
Combustion hardware optimization: Design and analyze injectors and combustor liners to enhance fuel-air mixing and thermal performance.
Cross-functional integration : Collaborate with multidisciplinary teams to integrate combustion system advancements into turbine products.
Progress innovative design solution : Utilize computational and experimental techniques to validate design concepts and optimize performance.
A dditive M anufacturing (AM) Technology Engineer
AM Materials Development : Characterize m etallurgical and mechanical properties of commercially available and emerging AM Alloys (Nickel, Stainless Steels) . Collaborate with external partners (Universities, Labs) to qualify new AM alloys. Work closely with engineering team s to create m aterial properties design curves and qualify new AM components .
AM Technology Maturation : Use Technology Readiness Level (TRL) framework to direct development programs to advance AM technologies including distortion prediction, low angle printing techniques, advanced surface finishing, print paramet er optimization, beam shaping, microstructure control , and process monitoring/quality assurance techniques. Identify new candidate AM components and identify path way s to resolve associated technology gaps.
Design for AM Knowledge Capture & Consulting : D ocument best practices for AM design and manufacturing. Lead periodic in-house training for engineering staff and serve as AM technology subject matter expert for component design teams. Support manufacturing, design, and field with root cause/corrective action activities. Monitor industry and university AM technology advancements and identify high potential areas.
Engineering Data Scientist
Engineering Fundamentals Application : Leverage knowledge of stress, strain, fatigue, and mechanics of materials to interpret model outputs and ensure alignment with physical design principles.
Design Optimization Support : Collaborate with mechanical engineers to analyze gas turbine component designs and identify opportun