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Cfd Engineer Jobs in Atlanta, GA (NOW HIRING)

Senior Mechanical Engineer

Atlanta, GA ยท On-site

$100K - $132K/yr

Pipe-Flo) and CFD software (e.g. Fluent, 6Sigma) preferred. * Knowledge of the construction process ... Accredited engineering degree or equivalent experience required. * Minimum 10 years related ...

Senior Mechanical Engineer

Atlanta, GA ยท On-site

$128K - $192K/yr

Pipe-Flo) and CFD software (e.g. Fluent, 6Sigma) preferred. * Knowledge of the construction process ... Accredited engineering degree or equivalent experience required. * Minimum 10 years related ...

Engineering Manager Infrastructure Products Group Atlanta, Georgia, United States | Dallas, Texas ... Experience reviewing or performing simulation work (FEA & CFD would be beneficial). * Strong ...

Experience reviewing or performing simulation work (FEA & CFD would be beneficial). * Strong ... Demonstrated ability to coordinate engineering deliverables across multiple stakeholders and ...

2027 Mechanical Engineer Intern

Atlanta, GA ยท On-site

$18 - $24.25/hr

We are seeking Mechanical Engineer Interns for Summer 2027 ! This is a paid, in-person, 12 week ... Experience with FEA and/or CFD analysis tools. * Ability to integrate electrical components into ...

2027 Mechanical Engineer Intern

Atlanta, GA ยท On-site

$18 - $24.25/hr

We are seeking Mechanical Engineer Interns for Summer 2027 ! This is a paid, in-person, 12 week ... Experience with FEA and/or CFD analysis tools. * Ability to integrate electrical components into ...

Showing results 21-40

Cfd Engineer information

See Atlanta, GA salary details

$10.6K

$89.4K

$126.9K

How much do cfd engineer jobs pay per year?

As of Aug 12, 2026, the average yearly pay for cfd engineer in Atlanta, GA is $89,448.00, according to ZipRecruiter salary data. Most workers in this role earn between $82,200.00 and $105,800.00 per year, depending on experience, location, and employer.

What is the difference between Cfd Engineer vs Mechanical Engineer?

AspectCfd EngineerMechanical Engineer
Required CredentialsBachelor's in Mechanical, Aerospace, or related fields; proficiency in CFD softwareBachelor's in Mechanical or Aerospace Engineering; often includes CFD knowledge
Work EnvironmentDesign firms, aerospace, automotive, energy sectors; focus on fluid dynamics simulationsManufacturing, product design, HVAC; broader engineering tasks including mechanics and thermodynamics
Industry UsagePrimarily in industries requiring fluid flow analysisWider industry application including structural and thermal systems

While both roles require a background in mechanical engineering and CFD software, Cfd Engineers specialize in fluid dynamics simulations, whereas Mechanical Engineers have a broader scope including mechanics, thermodynamics, and design. Cfd Engineers focus more on computational analysis, while Mechanical Engineers may handle a wider range of engineering tasks.

Are CFD engineers in demand?

CFD engineers are in demand in industries such as aerospace, automotive, and energy, where computational fluid dynamics simulations are essential for product design and optimization. The role requires strong skills in fluid mechanics, programming, and simulation software like ANSYS or OpenFOAM, and employment prospects are generally stable due to ongoing technological advancements and engineering needs.

What is a CFD engineer?

As a computational fluid dynamics (CFD) engineer, your responsibilities are to use CFD formulas to predict fluid flows and heat transfers. You use software applications such as OpenFOAM or Gerris to compute the finite element method and the finite volume method, which use partial differential equations to create two- or three-dimensional models and simulations. Your job duties include analyzing problems, building models, and proposing solutions. Your experience makes you a valuable part of research and development teams in the mechanical and chemical engineering industries as well as the automobile, aerospace, and aeronautical industries.

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

To thrive as a CFD Engineer, you need a strong background in fluid dynamics, thermodynamics, and numerical methods, usually supported by a degree in mechanical, aerospace, or chemical engineering. Expertise in CFD software such as ANSYS Fluent, OpenFOAM, or STAR-CCM+, along with programming skills in Python or MATLAB, is typically required. Attention to detail, problem-solving ability, and clear communication help you interpret complex data and collaborate with multidisciplinary teams. These skills are crucial for delivering accurate simulations, optimizing designs, and supporting engineering decisions in industries where fluid behavior is critical.

What are some common challenges CFD engineers face when working on complex simulation projects?

CFD Engineers often encounter challenges related to balancing simulation accuracy with computational resources and time constraints. Handling large and intricate geometries can lead to long computation times and may require advanced meshing strategies or high-performance computing. Additionally, accurately modeling boundary conditions and physical phenomena, especially in multiphase or turbulent flows, demands a deep understanding of fluid dynamics and software capabilities. Effective collaboration with design, testing, and product teams is also crucial to validate simulation results and implement practical solutions.
What are the most commonly searched types of Cfd Engineer jobs in Atlanta, GA? The most popular types of Cfd Engineer jobs in Atlanta, GA are:
What are popular job titles related to Cfd Engineer jobs in Atlanta, GA? For Cfd Engineer jobs in Atlanta, GA, the most frequently searched job titles are:
What cities near Atlanta, GA are hiring for Cfd Engineer jobs? Cities near Atlanta, GA with the most Cfd Engineer job openings:
Infographic showing various Cfd Engineer job openings in Atlanta, GA as of August 2026, with employment types broken down into 89% Full Time, 4% Part Time, and 7% Contract. Highlights an 83% Physical, 5% Hybrid, and 12% Remote job distribution, with an average salary of $89,448 per year, or $43 per hour.

BESS Fire Protection Engineer I

IS International Services

Atlanta, GA โ€ข On-site, Remote

$79K - $107K/yr

Full-time

Posted 19 days ago


Job description

We are seeking a highly motivated and technically skilled BESS Fire Protection Engineer I to join an industry-leading team focused on clean energy technology solutions. This specialized role bridges the gap between complex regulatory codes and actionable product requirements. The successful candidate will drive informed business and technical decisions regarding safety across product lines, field deployments, and operational risk mitigation strategies.
Position Status: Full-Time, Salaried (Exempt), base and bonus
Work Location: 100% Fully Remote
Travel Requirements: Up to 40% travel required within the Americas region
Key Responsibilities
  • Code Translation: Collaborate with multi-disciplinary stakeholders to interpret complex local and international fire code regulations, converting them into precise, actionable technical product requirements or permitting solutions.
  • Compliance Matrixes: Design, implement, and maintain exhaustive code compliance matrixes to extract and track definitive regulatory criteria across distinct deployment areas.
  • Deficiency Resolution: Proactively identify regulatory compliance gaps or unique local jurisdictional (AHJ) variances, developing robust technical workarounds and engineering solutions.
  • Risk Mitigation & Testing: Support operational aspects of corporate fire safety initiatives, validating safety parameters by defining how systems are modeled, configured, and full-scale tested for deflagration and fire propagation potentials.
  • Reporting & Visibility: Synthesize complex test data and compliance profiles into clean, visual dashboards and executive reports (using Word, Excel, PowerPoint) to drive data-backed storytelling for regional leadership.
  • First Responder Education: Develop, update, and actively conduct specialized training frameworks to prepare internal teams, client representatives, and regional Fire Departments on proper emergency/first-responder protocols during thermal events.
  • Technical Issue Management: Directly participate in technical issue resolution pipelines, streamlining communications to uncover root causes and quickly finalize systemic engineering adjustments.
  • Industry Leadership: Keep a continuous pulse on shifting global codes, codes-committee rulings, and energy storage safety benchmarks to consistently advance the baseline safety of regional product deployments.

Requirements
Strict Candidate Screening Criteria
Mandatory BESS Experience: Candidates MUST possess between two (2) and five (5) years of dedicated, direct professional experience in Battery Energy Storage Systems (BESS) Fire Protection Engineering.
Strict Exclusion: This position is centered entirely on clean energy tech, deflagration, and thermal runaway mitigation. Candidates whose background is limited primarily or solely to traditional commercial building fire sprinkler/suppression systems design will not be entertained or considered.
Technical Standards & Core Competencies
Regulatory Familiarity: Demonstrated knowledge of, or direct testing/certification exposure to, UL 9540, UL 9540A, and UL 1973 protocols.
NFPA Competency: Practical structural application of NFPA Standards 855 (Energy Storage Systems), 68 (Deflagration Venting), 69 (Explosion Prevention), 70 (NEC), 72 (National Fire Alarm Code), 110, and 111.
Core Engineering Design: Proven experience drafting core fire compliance documentation, engineering briefs, and running Computational Fluid Dynamics (CFD) fire or plume modeling simulations.
Analytical Problem Solving: Highly adept at isolating anomalies within complex data models and translating dense engineering restrictions into direct operational workflows.
Continuous Learning: A proactive curiosity and proven ability to rapidly master emerging software platforms, technical modeling tools, and evolving BESS criteria.
Required Qualifications
Formal Education: Minimum of an Undergraduate or Master's degree in Fire Protection Engineering, Mechanical Engineering, Electrical Engineering, or an equivalent technical field with verified engineering experience.
Execution & Ownership: A relentless focus on execution characterized by deep personal ownership, independent execution capabilities, and a collaborative, forward-thinking mindset.
Communication Savvy: Outstanding public presentation and relationship-building skills, with a track record of driving cross-functional alignment and clearly conveying complex hazards to non-technical audiences.