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Manager Heat Transfer Engineer Jobs in Texas (NOW HIRING)

Thermal Hydraulics Engineer

Austin, TX ยท On-site

$99 - $121/hr

Perform simulations involving conjugate heat transfer, turbulence modeling, and ... MSc in Nuclear Engineering, Mechanical Engineering, or a related field. * 5+ years of handsโ€‘on ...

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Manager Heat Transfer Engineer information

What does a manager heat transfer engineer do?

A Manager Heat Transfer Engineer leads a team of engineers specializing in the analysis and design of systems that involve the transfer of heat, such as HVAC systems, power plants, or industrial machinery. Their duties include overseeing projects, providing technical guidance, and ensuring that heat transfer processes are efficient and meet safety and regulatory standards. They also coordinate with other departments, manage resources, and contribute to research and development efforts to improve thermal system performance. Strong leadership, technical expertise, and project management skills are essential for this role.

What are the key skills and qualifications needed to thrive as a manager heat transfer engineer?

To excel as a Manager Heat Transfer Engineer, you need a solid background in heat transfer, thermodynamics, and engineering principles, usually supported by a bachelor's or master's degree in mechanical or chemical engineering and relevant experience. Familiarity with simulation software like ANSYS Fluent, AutoCAD, and proficiency in project management tools are typically required, along with professional engineering licensure (PE) being a strong asset. Outstanding leadership, team management, and problem-solving abilities distinguish top performers in this role. These skills are essential for successfully leading engineering teams, ensuring high-quality designs, and delivering innovative thermal solutions on time and within budget.

What are some common challenges faced by a manager heat transfer engineer, and how can they be addressed?

As a Manager Heat Transfer Engineer, a common challenge is balancing the technical demands of heat transfer projects with leadership responsibilities such as team management and cross-department collaboration. Ensuring that the team stays updated on the latest industry standards and simulation tools, while also meeting tight project deadlines, requires strong organizational and communication skills. Addressing these challenges involves fostering an environment of continuous learning, delegating tasks effectively, and maintaining clear communication channels between engineering, manufacturing, and project management teams.

What is the difference between Manager Heat Transfer Engineer vs Heat Transfer Engineer?

AspectManager Heat Transfer EngineerHeat Transfer Engineer
CredentialsBachelor's or Master's in Mechanical or Chemical Engineering; often requires experience in project managementBachelor's or Master's in Mechanical or Chemical Engineering; focus on technical skills
Work EnvironmentLeads teams, manages projects, collaborates with departmentsPerforms design, analysis, and testing of heat transfer systems
Industry UsageUsed in manufacturing, energy, aerospace sectors for overseeing projectsCommonly employed in R&D, design, and technical departments

The main difference is that the Manager Heat Transfer Engineer oversees teams and projects, while the Heat Transfer Engineer focuses on technical design and analysis. Both roles require similar technical credentials, but the manager position involves leadership and project management responsibilities.

What are the most commonly searched types of Heat Transfer Engineer jobs in Texas?

The most popular types of Heat Transfer Engineer jobs in Texas are:

What cities in Texas are hiring for Manager Heat Transfer Engineer jobs?

Cities in Texas with the most Manager Heat Transfer Engineer job openings:

ENGINEER - RESEARCH ENGINEER - Mechanical Engineer

SWRI

San Antonio, TX โ€ข On-site

Full-time

Re-posted yesterday


Job description

  • Support aerospace mechanical design efforts by developing 3D models, detailed drawings, and mechanical assemblies from concept through release using SolidWorks.
  • Design simple to complex mechanical parts, housings, brackets, fixtures, and electronic packaging assemblies that meet program, manufacturing, and integration requirements.
  • Apply sound engineering principles in mechanics, thermodynamics, heat transfer, and materials to support reliable mechanical designs for aerospace applications.
  • Perform basic stress, thermal, fit, form, and function assessments and interpret analysis results to identify design risks, margins, and improvement opportunities.
  • Support multidisciplinary engineering teams by translating electrical, thermal, structural, and packaging requirements into practical mechanical design solutions.

  • Create, update, and maintain SolidWorks 3D models, assemblies, and engineering drawings for mechanical parts, electronic packaging, and aerospace hardware.
  • Support design reviews by preparing technical data, reviewing drawing packages, checking dimensions, and resolving mechanical design comments.
  • Perform basic stress, thermal, tolerance, and packaging assessments to verify that mechanical designs meet performance and integration requirements.
  • Coordinate with electrical, systems, manufacturing, and program staff to ensure mechanical designs support hardware layout, cable routing, cooling, assembly, and installation needs.
  • Support prototype build, inspection, troubleshooting, and test activities by resolving mechanical fit, fabrication, assembly, and documentation issues.

  • Requires a Bachelors degree in Mechanical Engineering, Aerospace Engineering, Structural Engineering, or Mechatronics Engineering.
  • Solidworks certification, FEA/CFD certifications and/or trainings preferred.
  • 1-5 years: Working in an engineering team environment with proven experience in delivering high quality design in support of programs.
  • 1-5 years: Proficient with SolidWorks for 3D modeling, mechanical assemblies, detailed drawings, configurations, and design documentation.
  • 1-5 years: Working knowledge of thermodynamics, heat transfer, mechanics of materials, stress analysis, tolerance analysis, and interpretation of engineering data.
  • 1-5 years: Ability to communicate technical issues clearly, work in a multidisciplinary team, and support aerospace hardware design, fabrication, integration, and testing.
  • A valid/clear driver's license is required.