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Thermal Energy Engineer Jobs (NOW HIRING)

... leaders, other Thermal Sciences engineers, product and manufacturing engineers, and supplier ... Applies Principles of Thermodynamics and Energy Conversion Systems - Interprets and predicts the ...

... leaders, other Thermal Sciences engineers, product and manufacturing engineers, and supplier ... Applies Principles of Thermodynamics and Energy Conversion Systems - Interprets and predicts the ...

... leaders, other Thermal Sciences engineers, product and manufacturing engineers, and supplier ... Applies Principles of Thermodynamics and Energy Conversion Systems - Interprets and predicts the ...

... leaders, other Thermal Sciences engineers, product and manufacturing engineers, and supplier ... Applies Principles of Thermodynamics and Energy Conversion Systems - Interprets and predicts the ...

... leaders, other Thermal Sciences engineers, product and manufacturing engineers, and supplier ... Applies Principles of Thermodynamics and Energy Conversion Systems - Interprets and predicts the ...

... engineering to enable our vehicle to deliver outstanding energy efficiency and range in service ... You'll collaborate on electrical powertrains, high-voltage batteries, thermal architectures, and ...

Thermal Engineer

Fremont, CA · On-site

$102K - $110K/yr

Requirements Bachelor's degree or foreign equivalent degree in Mechanical Engineer, Refrigeration, Air Conditioning and Energy Engineering, or related fields plus two years of experience in thermal ...

Senior Thermal Engineer

Rockledge, FL · On-site

$92K - $127K/yr

Thermal energy storage * Oscillating heat pipes * Advanced experimental cooling techniques Your ... Lead thermal engineering projects from concept through prototype, testing, and production * Develop ...

Senior Energy Engineer

Foster City, CA · On-site

$195K - $235K/yr

... engineering to enable our vehicle to deliver outstanding energy efficiency and range in service ... You'll collaborate on electrical powertrains, high-voltage batteries, thermal architectures, and ...

Showing results 21-40

Thermal Energy Engineer information

See salary details

$43.5K

$104.5K

$167.5K

How much do thermal energy engineer jobs pay per year?

As of Sep 14, 2026, the average yearly pay for thermal energy engineer in the United States is $104,528.00, according to ZipRecruiter salary data. Most workers in this role earn between $80,000.00 and $129,000.00 per year, depending on experience, location, and employer.

What does a thermal energy engineer do?

A Thermal Energy Engineer specializes in designing, analyzing, and improving systems that generate, transfer, and utilize heat energy. They work on projects such as heating, ventilation, and air conditioning (HVAC) systems, power plants, renewable energy systems, and industrial processes. Their work involves applying principles of thermodynamics and heat transfer to ensure systems are efficient, reliable, and environmentally friendly. Thermal Energy Engineers often collaborate with other engineers to develop innovative solutions for energy conservation and sustainability.

What are some common challenges thermal energy engineers face when working on large-scale projects?

Thermal Energy Engineers often encounter challenges such as integrating new energy-efficient systems into existing infrastructure, ensuring compliance with strict environmental and safety regulations, and coordinating with multidisciplinary teams including architects, mechanical engineers, and project managers. Managing project timelines and budgets while addressing technical issues like heat loss, system reliability, and optimizing energy output can also be demanding. Successfully navigating these challenges requires strong communication skills, adaptability, and a solid understanding of both theoretical and practical aspects of thermal systems.

What are the key skills and qualifications needed to thrive as a thermal energy engineer, and why are they important?

To thrive as a Thermal Energy Engineer, you need a solid background in thermodynamics, heat transfer, and energy systems, typically supported by a bachelor's or master's degree in mechanical or energy engineering. Familiarity with simulation tools such as ANSYS, MATLAB, and AutoCAD, as well as relevant certifications like Professional Engineer (PE), is highly valuable. Strong analytical thinking, problem-solving abilities, and effective teamwork are crucial soft skills in this field. These competencies ensure accurate system design, efficient energy solutions, and successful collaboration on complex engineering projects.

What cities are hiring for Thermal Energy Engineer jobs?

Cities with the most Thermal Energy Engineer job openings:

What are popular job titles related to Thermal Energy Engineer jobs?

For Thermal Energy Engineer jobs, the most frequently searched job titles are:

Thermal and Fluid Systems Engineer

Columbus, IN • On-site

Cummins Inc.
Transportation Equipment Manufacturing • 10K+ employees

Other

Posted 20 days ago


Cummins rating

8.2

Company rating: 8.2 out of 10

Based on 271 frontline employees who took The Breakroom Quiz


Job description

Job Summary:

This entry level/early career professional, applied science position utilizes the core competencies of thermal and fluid sciences, using and advancing analytical and experimental approaches to answer key questions about the performance and architecture of a system or component. This drives decisions and creates technical content which ultimately leads to state of the art, highly effective, environmentally friendly, and competitive products.


Key Responsibilities:

Investigates product, system, and/or technology problems that are related to thermal and fluid sciences, understands causal mechanisms, recommends appropriate action, owns problem resolution and documents results with guidance from more experienced team members. Applies and supports the improvement of processes such as Pre Program Planning, (PPP), Product Preceding Technology, (PPT), Value Package Introduction (VPI), or Value Package Change, (VPC), Engineering Standard Work, (ESW), Functional Excellence Practice (FEP) and tools related to thermal and fluid sciences such as GT‑Suite, Boost, Fluent, Converge, Concerto, CyberApps (virtual application model), Cummins Data Analysis Tool (CDAT), Mach, test data calculation, DARTS, test data storage, Calterm, Electronic Control Module (ECM) calibration tool, Emissions data system, Integrity, and ACCEPTS ECM in‑loop test bench required to support the processes and enable high quality decision making. Obtains input and negotiates with immediate stakeholders, such as team members, technical managers, project leaders, other Thermal Sciences engineers, product and manufacturing engineers, and supplier partners and delivers information and recommendations to support project decisions, or to provide input related to further analysis, design optimization, feasibility studies, or architecture definition. Makes decisions in the areas of day to day project details, such as conducting analysis, testing, and communication with stakeholders that impact and support the successful progression of projects. Owns problem resolution for moderately complex components, products, systems, subsystems or services with technical complexity and ambiguity increasing as experience is gained in the role. Provides independent execution of established work processes and systems, while still developing technology or product knowledge; engages with the improvement of systems and processes. Involves minimal direct management of people, but could involve the coordination and direction of work amongst technicians and/or temporary student employees. Contributes effectively toward team goals, exhibits influence within a work group and continues to develop proficiency in the competency areas critical to success in the role.


Competencies:

Applies Principles of Fluid Dynamics and Heat Transfer - Interprets and predicts the performance of fluid and thermal systems by leveraging a quantitative and intuitive comprehension of the flow of liquids and gases, the transfer of thermal energy between elements of a system, and the application of modeling and experimental tools, to answer key questions about the system or component.


Applies Principles of Thermodynamics and Energy Conversion Systems - Interprets and predicts the performance of energy conversion systems such as IC engines, gas turbines, fuel cells, and batteries, by leveraging a quantitative and intuitive comprehension of thermodynamics, fluid mechanics, modeling tools, controls, and experimental tools to answer key questions about the system or component.


Product Failure Mode Avoidance - Mitigates potential product failure modes, by identifying interfaces, functions, functional requirements, interactions, control factors, noise factors, and prioritized potential failure modes and potential failure causes for the system of interest to effectively and efficiently improve the reliability of Cummins’ products.


Product Function Modeling, Simulation and Analysis - Impacts product design decisions through the utilization and/or interpretation of computational tools and methods that predict the capability of a product's function relative to its system, sub-system and/or component level requirements.


Product Problem Solving - Solves product problems using a process that protects the customer; determines the assignable cause; implements robust, data-based solutions; and identifies the systemic root causes and recommended actions to prevent problem reoccurrence.


System Requirements Engineering - Uses appropriate methods and tools to translate stakeholder needs into verifiable requirements to which designs are developed; establishes acceptance criteria for the system of interest through analysis, allocation and negotiation; tracks the status of requirements throughout the system lifecycle; assesses the impact of changes to system requirements on project scope, schedule, and resources; creates and maintains information linkages to related artifacts.


Systems Thinking - Defines the system of interest by drawing the boundaries, identifying its context within its environment, its interfaces, and that it has a lifecycle to aid in planning the problem statement, scope and deliverables ; analyzes linkages and interactions between elements that comprise the system of interest by using appropriate methods, models and integration of outcomes to understand the system, predict its behavior and devise modifications to it in order to produce the desired effects.


Collaborates - Building partnerships and working collaboratively with others to meet shared objectives.


Communicates effectively - Developing and delivering multi-mode communications that convey a clear understanding of the unique needs of different audiences.


Decision quality - Making good and timely decisions that keep the organization moving forward.


Drives results - Consistently achieving results, even under tough circumstances.


Self-development - Actively seeking new ways to grow and be challenged using both formal and informal development channels.


Values differences - Recognizing the value that different perspectives and cultures bring to an organization.


Applies Principles of Statistical Methods - Analyzes technical data using descriptive statistics, probability distributions, graphical analysis, and statistical inference (population and sample, confidence intervals, and hypothesis testing); models relationships between response and independent variables using analysis of variance, regression, and design of experiments to make rigorous, data-based decisions.


Technical Documentation - Documents information based on knowledge gained as part of technical function activities; communicates to stakeholders with the goal of enabling improved technical productivity and effective knowledge transfer to others who were not originally part of the initial learning.


Product Development Execution, Monitoring and Control - Plans, schedules, coordinates and executes the activities involved in developing a product to a respectively aligned hierarchy of requirements and technical profiles; monitors and communicates across functional boundaries to meet project resource and quality expectations; ensures product capability meets or exceeds expectations and takes mitigating actions when project risks are higher than expected; understands the full product life cycle process and stakeholders.


Design and Application of Open/Closed Loop Controls - Specifies software features that interact with mechanical, hydraulic, chemical and electronic systems to deliver desired system states; specifies control system architectures which include appropriate measurements, correct actuation, and algorithms for Cummins' products; configures and/or understands open/closed loop feedback controls features and the system interactions between hardware and software in Cummins' products.


Education, Licenses, Certifications:

College, university, or equivalent Bachelor's degree in Engineering or appropriate STEM field is required.


Post-graduate (Master's) degree relevant to this discipline area may be required for select roles.


This position may require licensing for compliance with export controls or sanctions regulations.


Experience:

Entry level/Early career professional. Preferred candidates would have relevant experience working in either a temporary student employment environment (intern, co-op, or other extracurricular team activities) or as an early career professional in a relevant technical discipline area. Knowledge of MS Office tools is also preferred



  • Understands the basics of diesel aftertreatment functioning, including DOC/DPF.


  • Ability to use simulation tools like AVL Boost or similar tools.


  • Able to use applications like MATLAB to process and evaluate data.


  • Degree Level: Bachelors or master's in mechanical, chemical or electrical/electronics.


  • Start Date Dec 2026.



U.S. Early Careers Eligibility Requirements:

Exempt Entry Level: Designed for external candidates within 2 years of completing their highest level of degree (Bachelor, Master, PhD, MBA, or JD) from an accredited U.S. college/university, and currently reside within the continental U.S.


International Student Eligibility (U.S. based roles): F-1 visa students must have approved Curricular Practical Training (CPT) or Occupational Practical Training (OPT) before their Early Career assignment begin. CPT/OPT must relate to their degree and be authorized by their university. Students are responsible for securing this approval through their school’s international office.


Job

Engineering


Organization

Cummins Inc.


Role Category

On-site with Flexibility


Job Type

Exempt - Entry Level


Min Salary

$67200


Max Salary

$100800


ReqID

2434736


Relocation Package

Yes


100% On-Site

No


Cummins and E-Verify

At Cummins, we are an equal opportunity and affirmative action employer dedicated to diversity in the workplace. Our policy is to provide equal employment opportunities to all qualified persons without regard to race, gender, color, disability, national origin, age, religion, union affiliation, sexual orientation, veteran status, citizenship, gender identity and/or expression, or other status protected by law. Cummins validates the right to work using E-Verify and will provide the Social Security Administration (SSA) and, if necessary, the Department of Homeland Security (DHS), with information from each new employee’s Form I-9 to confirm work authorization. Visit http://EEOC.gov to know your rights on workplace discrimination.


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About Cummins

Sourced by ZipRecruiter

Cummins Inc., headquartered in Columbus, IN, US, is a global power leader that designs, manufactures, and distributes numerous power products and systems. With its genesis from as early as 1919, the company readily serves diverse industries such as transportation, industrial, generator drive, or marine applications, among others. At the heart of Cummins' operations, its key product lineup encompasses diesel & natural gas engines, generator sets, engine components, and filtration, emission solutions, and electrical power generation systems. Cummins deeply embodies core values of integrity, respect for diversity, teamwork, performance excellence, and social responsibility - all of which dynamically fuel their mission 'Making people's lives better by powering a more prosperous world'.

Industry

Transportation equipment manufacturing

Company size

10,000+ Employees

Headquarters location

Columbus, IN, US

Year founded

1919