Lead Mechanical Engineer - Heat Exchangers (Miami, FL)
Miami, FLAll locationsMiami, FLAustin, TX On-site
$150,000–$215,000 a yearJobFig found this opening at its original source and checks that it remains available.
About the role
We are seeking an experienced Mechanical Engineer specializing in heat exchanger design to join our growing team. In this role, you will lead the design, analysis, and optimization of heat exchangers for our thermal energy storage systems, ensuring efficient heat transfer, system reliability, and performance across demanding operational conditions. This position is based in Miami, FL preferred, however an alternate location of Austin, TX is possible for the right candidate. If hired for this role, relocation to one of these sites is required. We provide relocation assistance.
What you'll bring
- Bachelor's degree in Mechanical Engineering or related field
- 7+ years of mechanical engineering experience with a focus on thermal-fluid systems with a focus on heat exchanger design, analysis, and development.
- Demonstrated experience designing, analyzing, and optimizing heat exchangers (shell-and-tube, fined heat exchangers, heat sinks, printed circuit heat exchangers, heat pipes, etc) for high temperature applications.
- Hands-on experience in testing of heat exchangers, energy, and power conversion systems.
- Strong foundation in thermodynamics, conjugate heat transfer, fluid mechanics, and thermal coatings, with the ability to perform thermal and hydraulic sizing calculations
- Proficiency in 3D CAD software (SolidWorks, Creo, or similar) and experience designing complex flow paths and pressure-containing components
- Experience with FEA and CFD software (ANSYS multiphysics, Nastran, or similar) for thermal stress analysis and fatigue life prediction under cyclic operating conditions
- Familiarity with CFD tools for flow distribution, heat transfer optimization, and pressure drop analysis
- Strong understanding of GD&T ASME Y14.5 and engineering drawing standards for precision-manufactured components
- Knowledge of relevant standards and codes (ASME BPVC, TEMA, API, ISO) as applied to pressure vessels, heat exchangers, and rotating equipment
- Experience designing for demanding operating environments, including thermal cycling, high-temperature creep, and corrosive or reactive working fluids
- Excellent communication and collaboration skills with the ability to work across multidisciplinary teams