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Heat Transfer Phd Jobs (NOW HIRING)

Senior Heat Transfer Engineer

Jupiter, FL · On-site

$102K - $140K/yr

EDUCATION AND EXPERIENCE: * BS/MS/PhD in Mechanical or Aerospace Engineering * 8+ years of experience in heat transfer focused on turbine airfoil cooling, durability, and thermal lifing analyses and ...

Senior Heat Transfer Engineer

Jupiter, FL · On-site

$102K - $140K/yr

EDUCATION AND EXPERIENCE: * BS/MS/PhD in Mechanical or Aerospace Engineering * 8+ years of experience in heat transfer focused on turbine airfoil cooling, durability, and thermal lifing analyses and ...

MS or PhD in Mechanical Engineering with emphasis on Heat Transfer or Fluid Mechanics is preferred. * Thorough understanding of heat sinks, heat pipes, fans, and aero‑acoustics. * Experience with ...

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Master's or PhD degree in Mechanical Engineering or related field Focus or coursework in heat transfer, fluid dynamics, or thermal systems required . *Laboratory experience *Graduate research ...

... PhD in engineering. Desired Qualifications : * Knowledge of the fundamentals of thermodynamics and fluid mechanics as well as heat transfer and heat exchanger design. * Knowledge of two-phase flow ...

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Heat Transfer Phd information

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How much do heat transfer phd jobs pay per hour?

As of Sep 11, 2026, the average hourly pay for heat transfer phd in the United States is $18.92, according to ZipRecruiter salary data. Most workers in this role earn between $16.35 and $21.15 per hour, depending on experience, location, and employer.

What is a Heat Transfer PhD?

A Heat Transfer PhD is an advanced academic degree focused on the study of heat movement and energy transfer processes within different materials and systems. Individuals earning this degree typically engage in research and coursework related to thermodynamics, fluid mechanics, conduction, convection, and radiation. Graduates often pursue careers in academia, research institutions, or industries such as energy, aerospace, automotive, or manufacturing, where expertise in heat transfer is essential for innovation and problem-solving.

What are the key skills and qualifications needed to thrive as a Heat Transfer PhD?

To thrive as a Heat Transfer PhD, you need advanced knowledge in thermodynamics, fluid mechanics, and mathematical modeling, typically supported by a doctoral degree in mechanical engineering or a related field. Proficiency with simulation tools like ANSYS Fluent, MATLAB, and computational fluid dynamics (CFD) software is essential, along with experience in experimental methods and data analysis. Exceptional problem-solving abilities, attention to detail, and strong written and verbal communication skills distinguish top performers in this role. These skills and qualities are crucial for conducting high-impact research, publishing results, and advancing innovation in thermal systems and energy technologies.

What are the typical research projects or applications a Heat Transfer PhD might work on within industry or academia?

As a Heat Transfer PhD, you may engage in diverse research projects such as improving energy efficiency in industrial processes, developing advanced cooling systems for electronics, or innovating thermal management in renewable energy technologies. In academia, your work often involves publishing research, mentoring students, and collaborating with interdisciplinary teams. In industry, you might work closely with engineers and product designers to solve real-world thermal challenges, translate research into practical solutions, or optimize manufacturing processes. The role often balances independent research with teamwork, offering opportunities to contribute to both theoretical advancements and applied innovations.

What is the difference between Heat Transfer Phd vs Mechanical Engineer?

AspectHeat Transfer PhdMechanical Engineer
Required CredentialsPhD in Heat Transfer or related fieldBachelor's or Master's in Mechanical Engineering
Work EnvironmentResearch labs, academia, R&D departmentsManufacturing, design, product development
Industry UsageSpecialized research, advanced thermal analysisDesign, analysis, and manufacturing of mechanical systems

While a Heat Transfer Phd focuses on advanced research and specialized thermal analysis, a Mechanical Engineer applies broader engineering principles to design and develop mechanical systems. Both roles may work in similar industries, but the Phd is more research-oriented, whereas the Mechanical Engineer is more application-focused.

What are popular job titles related to Heat Transfer Phd jobs?

For Heat Transfer Phd jobs, the most frequently searched job titles are:

Infographic showing various Heat Transfer Phd job openings in the United States as of September 2026, with employment types broken down into 2% As Needed, 74% Full Time, 21% Part Time, 2% Contract, and 1% Nights. Highlights an 94% Physical, 1% Hybrid, and 5% Remote job distribution, with an average salary of $39,356 per year, or $18.9 per hour.

Senior Heat Transfer Engineer

Jupiter, FL • On-site

Kratos Defense
National Security and International Affairs • 1 - 5K employees

$102K - $140K/yr

Full-time

Re-posted 5 days ago


Kratos Defense & Security Solutions rating

7.8

Company rating: 7.8 out of 10

Based on 10 frontline employees who took The Breakroom Quiz


Job description

Are you ready to embark on an exciting career with a leading turbomachinery and jet engine aerospace engineering company? At Florida Turbine Technologies (FTT), we're not just about cutting-edge products; we're about shaping the future of aerospace innovation. If you're looking for a workplace that thrives on creativity, collaboration, and expertise, you've found your home!

Located in the stunning setting of Jupiter, Florida, FTT is a growing world-class turbomachinery company with a vibrant team of over 300 engineers and technicians, bringing together more than 4,000 years of combined experience in aerospace (military and commercial), industrial, and space turbomachinery. For 25 years, we've been at the forefront of next-generation technologies, specializing in rocket turbopumps, aircraft engines, and high-performance jet engines for cruise missiles and unmanned aerial systems (UAS).

At FTT, we offer a comprehensive suite of services including design, aerodynamics, performance, heat transfer, rotor dynamics and bearing design, structural analysis, manufacturing, testing, and field support. Our Turbine Technologies division also provides innovative engineering services, testing, and material solutions for military and commercial engines, space propulsion, and industrial power applications.

With additional offices in Derby, UK, and Wildau, Germany, we proudly extend our reputation for engineering excellence to the European marketplace, enhancing our access to cutting-edge manufacturing capabilities and a robust supply chain.

Our parent company, Kratos Defense and Security Solutions, empowers us to leverage cross-industry capabilities, delivering innovative and cost-effective solutions that benefit our customers.

We have an immediate opening for a mid-level to senior-level Heat Transfer Engineer with multiple years of direct turbomachinery heat transfer experience.

This role is restricted to U.S. citizenship with ability to obtain/maintain security clearance. FTT will require proof of status prior to employment.

GENERAL JOB SUMMARY:

The Senior Heat Transfer Engineer will be involved in various cooling, secondary flow and heat transfer analyses tasks of turbomachinery, rocket engine components, and product/process improvements. Actively participates in the engineering discipline's technical development and mentors and oversee technical content of junior engineers.

ESSENTIAL JOB FUNCTIONS:

  • Uses computer-aided software (CAD) to produce initial design and specifications for aircraft components.
  • Conducts feasibility studies and testing on new and modified airfoil cooling designs.
  • Document changes through a formal engineering change notification process.
  • Works on complex issues where analysis of situations or data requires an in-depth evaluation of variable factors.
  • Exercises judgment in selecting methods, techniques, and evaluation criteria for obtaining results.
  • Networks with key contacts outside own area of expertise.
  • Determines methods and procedures on new assignments and may coordinate activities of other personnel (Team Lead).
  • Maintain sensitive and confidential information as required by company and government requirements.
  • Communicate and interact effectively with peers, supervisors, and customers, including maintaining respect for others, and following company policies.
  • Maintain knowledge, skills, and abilities as it pertains to your job.
  • Other job duties as assigned.

SUPERVISORY RESPONSIBILITY:

Technical leadership abilities capable of functioning as key heat transfer specialist and technical focal point.


  • Proficiency in heat transfer physics and engineering principles with 8+ years of turbomachinery thermal design and analysis experience in turbine components, combustion hardware, and secondary air systems.
  • Specialized in turbine airfoil durability, cooling design and thermal lifing. Understanding of cooling technology parameters and uses in scaling and evaluating designs.
  • Knowledgeable on how material and coating selection impacts the airfoil design.
  • Experienced in iterating with other Disciplines and integrated teams to shape and finalize product requirements.
  • Skilled in both hand calculations and engineering software simulation of heat transfer, fluid dynamic behavior and correlation with experimental testing.
  • Ability to translate analyses into concrete product goals and specifications.
  • Skilled at characterizing risk to produce balanced design solutions.
  • Experienced in all phases of development: conceptual design, analysis, manufacturing, validation, and field service.
  • Awareness of turbomachinery cycle performance drivers and trade factors.

EDUCATION AND EXPERIENCE:

  • BS/MS/PhD in Mechanical or Aerospace Engineering
  • 8+ years of experience in heat transfer focused on turbine airfoil cooling, durability, and thermal lifing analyses and design.
  • Experience with Conjugate Heat Transfer (CHT), CFD, additive manufacturing. Proficiency with MSC Easy5 and ANSYS FEA is desired.

WORK ENVIRONMENT/PHYSICAL REQUIREMENTS:

  • Office and/or manufacturing environment.
  • Ability to sit and stand for long periods of time.
  • Ability to perform repetitive motion (keyboarding, mouse, phones, rotating wrist, using tools/equipment).

TRAVEL REQUIREMENTS: Yes, if applicable.


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