CFD ENGINEER JOB DESCRIPTION TEMPLATE

Review CFD Engineer job descriptions from leading industries to compare technical requirements, software proficiency, and career expectations across specializations.

CFD Engineer Job Description Template

1. About the Role

Fluid behavior does not announce itself. A hydraulic circuit that underperforms, an exhaust SCR system that fails emissions targets, a combustion chamber with poor heat distribution - each traces back to simulation work that was incomplete or uncorroborated by physical test data. The CFD Engineer owns the numerical modeling that closes that gap, translating design intent into validated flow and thermal predictions before components are ever machined. Sitting within product engineering or a dedicated R&D group, this role carries responsibility for model-building, design-of-experiments planning, and the correlation studies that give the broader engineering team confidence in simulation fidelity.

2. Position Summary

As the CFD Engineer, you drive the simulation-to-hardware validation cycle for fluid flow and thermal systems across industrial product lines, with direct accountability for model accuracy and design recommendation quality. You work within a cross-functional R&D or product engineering team, collaborating daily with mechanical design engineers, test technicians, and project managers to ensure simulation outputs actively inform development decisions.

3. Why Join Us

Career Impact: Sustained exposure to combustion modeling, conjugate heat transfer, and turbulence method selection builds the kind of domain depth that distinguishes senior simulation engineers in the industrial manufacturing market.

Business Impact: Validated CFD predictions directly reduce the number of physical test iterations required per product program, compressing development timelines and lowering prototype costs for the organization.

Growth Opportunity: Engineers in this role routinely expand from individual model execution into leading NPD project simulation streams, positioning themselves for senior or principal CFD engineering roles within global product lines.

4. Key Responsibilities

  • Design and execute CFD models for fluid flow and thermal systems spanning hydraulic, combustion, and exhaust product lines.
  • Perform correlation studies comparing simulation results to physical test bench data to bound model confidence and document findings.
  • Develop and refine parametric models to support design-space sensitivity and trade-off evaluations at each stage of product development.
  • Apply optimization methods to identify designs that meet performance, reliability, and cost targets defined by program requirements.
  • Validate graduate and junior engineer simulation inputs and review analysis outputs to maintain consistent technical standards across projects.
  • Mentor design engineers on CFD methods and best practices, enabling broader team adoption of simulation-driven development.
  • Develop and document engineering guidelines, standard operating procedures, and project knowledge assets to preserve institutional learning.
  • Partner with test technicians and manufacturing engineers to align simulation hypotheses with physical fabrication constraints and experimental plans.

5. Required Qualifications

  • Bachelor's degree in Mechanical Engineering, Fluid Mechanics, Chemical Engineering, or a related field, or equivalent work experience.
  • 3 or more years of CFD simulation experience in an industrial product development environment, with demonstrated model-to-test correlation work.
  • Solid knowledge of fluid mechanics and heat transfer fundamentals, including the physics underlying turbulence model selection.
  • Experience with steady-state and transient flow simulation, including conjugate heat transfer and multi-phase flow scenarios.
  • Ability to construct and execute design-of-experiments plans, apply statistical methods to simulation datasets, and draw defensible engineering conclusions.
  • Proficiency in at least one high-level scripting or programming language for workflow automation and post-processing.
  • Strong written and verbal communication skills with the ability to present technical findings clearly to engineering and management audiences.
  • Must be authorized to work in the United States.

6. Preferred Qualifications

  • Master's degree or higher in Fluid Mechanics, Thermal Energy Engineering, Mechanical Engineering, or a related discipline, with formal coursework in numerical heat transfer.
  • Experience with combustion modeling, spray and particle simulation, or wall film modeling in an industrial or powertrain context.
  • Familiarity with CAD-to-mesh workflows using parametric modeling tools, enabling direct model updates from design revisions.
  • Knowledge of multi-objective optimization techniques applied to simulation-based design space exploration.

7. Success Metrics and Environment

  • Simulation-to-test correlation coefficient per product program, reflecting model fidelity against physical bench data.
  • Number of physical test iterations avoided per NPD program, measuring the practical impact of virtual testing on development cost.
  • Mean time from CAD receipt to validated CFD result, tracking throughput efficiency within the simulation workflow.
  • Design recommendation acceptance rate by the R&D team, indicating the engineering credibility of simulation outputs.
  • Percentage of project simulation documentation completed to standard operating procedure, ensuring knowledge retention across programs.
  • Typical tools: CFD solvers (commonly Ansys Fluent or Star-CCM+), scripting environments (commonly Python or MATLAB).

8. Compensation and Benefits (US Market Benchmark)

  • Base Salary Range: $85,000 to $120,000 per year depending on experience and location.
  • Bonus: Annual performance bonus of 5 to 10% of base salary, program-dependent.
  • Equity: Not commonly offered at this level in industrial manufacturing; may apply at senior or director level.
  • Health Benefits: Medical, dental, and vision coverage, typically employer-subsidized for employee and dependents.
  • PTO: 15 to 20 days per year plus federal holidays, with some employers offering additional sick leave.
  • Common Perks: Tuition reimbursement for graduate engineering programs, professional development allowance, and access to engineering software licensing for personal skill development.


Figures are estimates based on general US market benchmarks and may be outdated. Adjust based on location, company size, and seniority level.

9. EEO and Legal

Reasonable accommodations are available to applicants and employees with disabilities throughout the hiring process and during employment, in accordance with the Americans with Disabilities Act and applicable state law. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, national origin, age, disability, veteran status, genetic information, or any other characteristic protected under federal, state, or local law. Employment in this role is contingent on successful completion of a background check. Candidates must be authorized to work in the United States.

CFD Engineer Job Description Example

1. CFD Engineer (Hydraulic Product R&D)

The CFD Engineer owns the full simulation lifecycle for hydraulic products, from performing CFD analyses and correlation studies to creating design tools and processes within a collaborative R&D team. Working closely with design engineers, manufacturing engineers, machinists, and test technicians, this role delivers validated recommendations that directly advance product performance and compliance goals.


Key Responsibilities

  • Serve as the CFD subject matter lead as a member of a high performing and collaborative R&D team.
  • Perform CFD analyses for existing and new hydraulic products.
  • Provide design recommendations based on CFD analysis to achieve product design goals.
  • Define complex problems for investigation and communicate results to the R&D team and management.
  • Collaborate with the R&D team on new concepts, designs, test plans, and test data.
  • Develop and deliver presentations of design, analysis, and test topics to the R&D team.
  • Plan and conduct experiments to evaluate conceptual designs of new or enhanced hydraulic products.
  • Perform correlation studies of test data to CFD analysis to validate analysis confidence.
  • Create and implement CFD design tools and processes for use on production designs.
  • Provide training and mentoring of design engineers to utilize CFD tools and processes.


Required Qualifications

  • Master's degree or higher in Physics, Mechanical Engineering, or Aerospace Engineering, or a Bachelor's degree in engineering with substantial CFD work experience.
  • 3 or more years of experience modeling and simulating fluid dynamics with working knowledge of CFD software.
  • Experience with steady and unsteady flow simulation and numerical methods applicable to turbulence.
  • Knowledge of turbulence modeling methods including RANS, LES, and DNS.
  • Ability to apply mathematical operations such as frequency distribution, analysis of variance, correlation techniques, and factor analysis.
  • Proficiency in Ansys Mechanical and Ansys Fluent, with working knowledge of CREO or equivalent 3D modeling software.
  • Working knowledge of engineering software such as Mathcad, MATLAB, and LabVIEW.
  • Experience with programming languages such as Fortran, C/C++, and Python.
  • Excellent writing, presentation, communication, collaboration, and organizational skills.

2. Advanced CFD Engineer (eVTOL Aerodynamics)

Embedded within the aerodynamics team, the Advanced CFD Engineer develops and validates CFD methodology tools, maintains the knowledge base, and drives continuous improvement of simulation throughput and quality across aviation programs. Working closely with junior CFD engineers, aerodynamicists, and cross-functional colleagues, this role shapes the analytical foundation that enables confident design decisions for eVTOL aircraft.


Core Functions

  • Analyse CFD results and compare them to experimental and flight test data.
  • Access and manipulate CFD models to support project execution and review.
  • Resolve CFD issues promptly, including recording and tracking.
  • Define and demonstrate benefits of new software or changes to existing packages to streamline workflows.
  • Develop new CFD methodology tools and contribute to continuous improvement of throughput and quality.
  • Maintain and update a CFD Wiki knowledge base including support documents and training material.
  • Validate and release CFD solver and post-processor scripts.
  • Provide mentoring and support to junior CFD engineers and aerodynamicists.
  • Propose design solutions for non-aerodynamic CFD projects such as aero-acoustics and thermodynamics.


Qualifications and Experience

  • Degree or professional qualification in a relevant engineering field.
  • Demonstrable track record of knowledge and application of tools and methods within the CFD field.
  • Experience in eVTOL or general aviation CFD and aerodynamics is advantageous.
  • Ability to deliver CFD results for complex flow conditions including rotors, wings, and interaction effects on eVTOL aircraft.
  • Core strength in creation and application of CFD tools and methodologies.
  • Proficiency in ANSYS Fluent, CFX, CATIA, 3DeX, and SolidWorks, with experience in MATLAB and Python.
  • Technical skills to document and present clear conclusions from large and complex datasets.
  • Leadership capability to offer expert opinion as a partner to colleagues across the business.
  • Ability to work independently and solve new problems in a fast-paced environment.

3. CFD Engineer (Rocket Engine Combustion)

Reporting to the project technical lead, the CFD Engineer develops simulation methods for combustion and real gas modeling while performing hydraulic CFD analyses for rocket engine components from meshing through post-processing. Partnering with academic institutions such as DLR and universities, this role advances the fluid dynamics technology roadmap and delivers validated results that directly support component-level and system-level design decisions.


Primary Duties

  • Develop simulation methods for fluid dynamics, particularly combustion and real gas modeling.
  • Perform CFD simulations for rocket engine components including hydraulic analyses with heat transfer.
  • Carry out geometry reduction, meshing, definition of modeling hypotheses, calculations, and post-processing.
  • Advance the technical direction of projects with respect to fluid dynamics and propose design optimizations.
  • Contribute to the research and technology roadmap in the area of fluid dynamics.
  • Exchange with academic partners in the field of combustion modeling.
  • Document and present results to internal and external customers at component and system level reviews.


Skills and Qualifications

  • Degree in aerospace engineering or mechanical engineering with a focus on thermo and fluid dynamics, a doctorate is a plus.
  • Deep knowledge of thermodynamics and fluid dynamics.
  • Experience with CFD simulation methods covering combustion, turbulence, two-phase flows, and heat transfer.
  • Proficiency in Ansys CFX, Fluent, and OpenFOAM, with advanced programming skills in C/C++, Python, and Fortran.
  • Ability to work in both Linux and Windows environments.
  • Strong analytical thinking with a structured and goal-oriented approach to work.
  • Excellent teamwork, cooperation, and communication skills across international departments.
  • Business fluent in German and English, French is a plus.

4. CFD Engineer (Automotive Exhaust Systems)

Sitting at the intersection of simulation engineering and automotive product development, the CFD Engineer builds and executes advanced CFD models to support system-level design verification from concept through end of production. Operating across global CFD analysis processes and cross-functional product teams, this role ensures simulation accuracy and drives technology innovation that strengthens competitive product strategies.


Duties

  • Manage assigned project tasks in a timely manner.
  • Support CFD analysis for system-level design and verification from conceptual designs to end of production.
  • Build CFD models and execute advanced simulations and analyses.
  • Optimize designs based on simulation insights and product understanding.
  • Correlate simulation results with test results to improve simulation accuracy.
  • Collect and document current and future CFD requirements to support competitive product strategies.
  • Ensure CFD developments remain within predefined program scopes and product-related targets.
  • Apply global CFD analysis processes and support new technology and process innovation.


Experience and Qualifications

  • Bachelor's degree in fluid mechanics, mechanical engineering, or automotive engineering, Master's degree or above preferred.
  • 3 to 5 years of relevant simulation experience in the automotive industry.
  • Good understanding of flow mechanics, measurement techniques, and exhaust system product development.
  • Familiarity with Star-CCM+, Fluent, or AVL Fire CFD software.
  • Data-driven problem-solving mindset with understanding of design for manufacturing.
  • Strong communication skills with team members and customers.

5. Sr. CFD Engineer (Combustion and Thermal Systems)

A key member of the product engineering team, the Sr. CFD Engineer leads CFD project execution for new product and technology development programs, leveraging simulation to identify design improvements and propose optimized solutions for performance, reliability, and cost. Collaborating across product engineers, manufacturing teams, and global stakeholders, this role builds technical knowledge assets that accelerate development outcomes.


Accountabilities

  • Execute new product development and technology development projects leveraging CFD simulation.
  • Manage CFD project execution to meet NPD and NTP project schedules and requirements.
  • Consult on product development projects and work closely with product engineers to simulate existing and new products.
  • Identify design improvement opportunities and drive implementation in collaboration with stakeholders.
  • Provide suggestions and solutions for component, product, or system design to achieve higher performance, reliability, and cost advantage.
  • Develop new techniques, document project knowledge, and share best practices.


Education and Experience

  • Master's degree or higher in Fluid Mechanics, Thermal Energy Engineering, or a related field, with formal coursework in numerical heat transfer or numerical flow mechanics desired.
  • Solid experience and knowledge of combustion and heat transfer.
  • Strong foundation in computational fluid mechanics with the ability to understand the physics behind calculations.
  • Mastery of at least one CFD code such as CFX or Fluent.
  • Proficiency in Microsoft Office including Word, Excel, PowerPoint, and Project.
  • Open-minded, self-motivated, and results-driven with the ability to work effectively in a team environment.
  • Excellent verbal and written communication skills.

6. Senior CFD Engineer (Nuclear Thermal Hydraulics)

Accurate simulation of nuclear reactor thermal hydraulics depends on the Senior CFD Engineer, who performs complex CFD analyses using tools such as ANSYS CFX and ANSYS Fluent, defends findings before customers and safety authorities, and conducts R&D in the field. Based within a team of approximately 10 engineers, this role verifies colleague studies, coaches junior engineers, and provides training that sustains the organization's high-level CFD expertise.


Leadership Responsibilities

  • Perform complex CFD engineering analyses in the domain of nuclear reactor systems using industry-standard methods and simulation tools.
  • Defend technical work to customers and safety authorities.
  • Write technical reports on studies performed.
  • Coach and train junior engineers on CFD topics.
  • Verify CFD studies performed by colleagues.
  • Conduct R&D in the field of CFD related to nuclear thermal hydraulic topics.
  • Collaborate closely with a team of approximately 10 engineers across departments.


Technical Qualifications

  • Master's degree in Engineering or Physics.
  • At least 10 years of experience conducting CFD analyses.
  • Strong understanding of numerical models implemented in CFD software.
  • Experience with ANSYS CFX, ANSYS Fluent, SATURNE, or equivalent recognized software.
  • Knowledge of the Belgian nuclear domain is an asset.
  • Proficiency in task automation through scripting, with Python preferred.
  • Ability to communicate effectively in English and French or Dutch.

7. CFD Engineer (eVTOL Aircraft Aerodynamics)

As the CFD Engineer at Overair, this role guides and executes numerical aerodynamics analysis for the Butterfly eVTOL aircraft, covering everything from rotor and wing modeling to high-lift system design and wind tunnel correlation. The aerodynamics team relies on this work to build the CFD databases and validated tools needed for external loads, stability and control, and aircraft performance certification.


Engineering Responsibilities

  • Perform analytical modeling of the aircraft using steady and unsteady flow solutions.
  • Model rotating components of the aircraft in isolation and installed on the vehicle.
  • Generate high-quality CFD meshes of complex geometries from CAD surfaces.
  • Assist with CFD database generation for external loads, stability and control, and aircraft performance.
  • Automate and streamline CFD workflows and support design trade studies.
  • Support the thermodynamics team with air inlet and exhaust analysis and design.
  • Support ground and flight test activities including analyzing and interpreting experimental and computational data.
  • Perform analysis and design of high-lift systems and detailed analyses of control surface gaps and excrescence items.
  • Evaluate and onboard new aerodynamics tools and validate existing ones to enhance the CFD team's capabilities.


Minimum Qualifications

  • Master's degree in Aeronautical or Aerospace Engineering or a related discipline.
  • At least 5 years of professional aerospace experience, or PhD with 3 years of equivalent experience.
  • Working aerodynamics experience with rotorcraft or other types of VTOL vehicles.
  • Highly experienced in CFD tools such as STAR-CCM+, Fun3D, Overflow, CFD++, or ANSYS Fluent.
  • Experience using industry-standard mesh generation tools on complex geometries, including Pointwise or equivalent.
  • Proficiency in 3D CAD surface definition via 3DExperience, CATIA V5/V6, or SolidWorks.
  • Experience with post-processing tools such as Tecplot or similar, and scripting tools including Linux, Bash, Python, C++, or MATLAB.
  • Experience correlating model outputs to experimental data from wind tunnel and flight tests.
  • Well-versed in airfoil selection and optimization using XFoil, MSES, or similar tools.
  • Excellent analysis skills with a track record of demonstrated success analyzing actual products.

8. CFD Engineer (Building Physics and Sustainability)

CFD Engineer delivers CFD and energy models for building physics projects across all business sectors, from data center airflow to renewable energy feasibility studies, supporting clients through design, reporting, and award submissions. The work directly supports the mentoring of graduate engineers and the advancement of in-house calculation methods, contributing to the consultancy's sustainability and digital transformation goals.


What You'll Do

  • Undertake project work including setting up CFD models and energy models based on design documentation and client discussions.
  • Produce CFD models and generate outputs for engineering reports and design development.
  • Manipulate original drawings according to specification revisions.
  • Use and develop in-house energy modeling tools including spreadsheets.
  • Prepare design calculations and models relating to energy, sustainability, and renewable energy research.
  • Validate graduate engineer input into renewable energy reports and calculations.
  • Assist in preparing presentations for technical briefings to clients and staff.
  • Liaise with software providers and developers on product improvement.
  • Perform hydraulic pipe flow analysis including head pressure calculations and velocity and pressure drop determination.
  • Mentor graduate engineers in the sustainability discipline and participate in knowledge development and best practices.


Background and Experience

  • BEng or MSc in an appropriate engineering discipline.
  • Experience in consulting or construction background preferred.
  • Advanced proficiency in 6Sigma DC CFD modeling software or equivalent such as Ansys Icepack or TileFlow.
  • Experience or knowledge of Digital Twin modeling.
  • Good knowledge of CAD, Revit, Navis, and BIM360, with advanced knowledge of Excel and MS Office applications.
  • Good understanding of BS and EN standards, key health and safety issues, and legislation.
  • Ability to manage multiple projects, prioritize workload, and work to deadlines.
  • Good team working skills with ability to work across multiple offices.
  • Good presentation skills and ability to develop long-term business relationships with clients and suppliers.
  • Good understanding of international working and business operations within a global consultancy.

9. Sr. CFD Engineer (Engine Filtration and Emissions)

The Sr. CFD Engineer produces CFD analyses and parametric models to recommend design improvements across engine filtration and exhaust SCR systems, supporting global engineering teams in the US, EMEA, and APAC. Working closely with product development teams worldwide, this role advances simulation fidelity and optimization methods that reduce physical testing and accelerate competitive product outcomes.


Day-to-Day Responsibilities

  • Utilize analytical skills and simulation tools to analyze fluid flow systems and recommend design improvements at different stages of product development.
  • Support global engineering across US, EMEA, and APAC to drive day-to-day and advanced CFD analysis related to engine filtration and exhaust SCR systems.
  • Develop and improve computational methods to increase simulation fidelity, compare simulations with experimental data, and document results and standard operating procedures.
  • Build and check CFD models from CAD designs and create parametric models to perform sensitivity and trade-off evaluations within the design space.
  • Apply optimization techniques to develop fundamental understanding of the design space and propose optimum designs that meet performance targets.
  • Participate in and support global product development opportunities and provide technical expertise toward design solutions.


Professional Experience

  • Master's degree in Mechanical Engineering, Automotive Engineering, Chemical Engineering, or a related engineering field.
  • 5 or more years of experience working with simulation tools such as Ansys Fluent.
  • Solid knowledge in fluid mechanics, computational methods for fluid flow and heat transfer, and steady and unsteady fluid flow analysis.
  • Experience with thermal analysis including conjugate heat transfer, spray and particle modeling, and wall film modeling.
  • CFD experience with Ansys software on engine exhaust SCR mixing systems is preferred.
  • Working knowledge of multi-objective optimization techniques and CAD tools such as Uni-Graphics NX and Pro-e.
  • Ability to read, analyze, and interpret engineering documents including drawings and specifications.
  • Proactive, able to work independently and as a team player, and responsive to critical technical issues.

10. Aerothermal CFD Engineer (Automotive Vehicle Development)

Reporting to the aero/thermal integration lead, the Aerothermal CFD Engineer develops and executes CFD simulations for cooling, thermal protection, and climate control across future vehicle programs, ensuring model validity on a continuous basis. Partnering with Thermal Integration engineers, Engine Systems, HVAC and Interior, Body engineering, Advanced Concepts Engineering, and the Styling Studio, this role translates simulation findings into design improvements that guide vehicle programs from concept through testing.


Scope of Work

  • Work on future vehicle programs with a focus on process efficiency and innovation.
  • Develop and carry out CFD simulations for new programs based on vehicle content and functional objectives.
  • Collaborate with aero/thermal integration engineers, release groups, and design studios to implement design improvements.
  • Prepare high-quality presentations to communicate simulation results and design recommendations to various groups.
  • Ensure CFD model validity and correlation on a continuous basis.
  • Perform multiple what-if studies and design changes to guide the design process.
  • Participate in vehicle testing activities and work with offshore teams as needed to execute projects.


Knowledge Skills and Abilities

  • Bachelor's degree in Mechanical or Electrical Engineering.
  • 3 or more years of experience in aero/thermal development, including involvement in at least one vehicle program.
  • Aerodynamic experience in automotive, aeronautics, or academia.
  • Strong familiarity with CFD tools including mesh generation and solution post-processing.
  • Proficiency in STAR-CCM+, OpenFOAM, ANSA, and TAITherm or equivalent simulation software.
  • Basic knowledge of or interest in automotive systems.

11. CFD Engineer (Material Science and FEA Modeling)

The CFD Engineer leads development and validation of advanced CFD and FEA models that incorporate material science fundamentals, supporting product and process innovation across cross-functional teams. Success in the position means translating material characterization data into predictive simulation models, evaluating AI and machine learning capabilities, and developing intellectual property that reduces cost and improves productivity.


Activities

  • Partner with cross-functional resources to translate product and process development needs using material science fundamentals and modeling expertise.
  • Develop and optimize product and process models based on Finite Element or Computational Fluid Dynamics methods.
  • Create new CAD or modify existing CAD designs as per application needs.
  • Develop meshing and perform static and dynamic finite element and CFD analyses of existing and new designs.
  • Develop CFD-based models to characterize material behaviors during product testing, manufacturing, and installation.
  • Identify material characterization requirements and coordinate testing with test labs.
  • Employ statistical methodologies to drive efficient data-based decisions and mitigate risks.
  • Develop standards and implement software to drive digital transformation strategy.
  • Evaluate new capabilities such as AI and machine learning for product design to improve productivity and reduce cost.


Position Requirements

  • Master's or PhD in Mechanical Engineering, Chemical Engineering, Materials Science, or a related field.
  • Bachelor's with 7 or more years of experience.
  • 5 or more years of experience in both CFD and FEA modeling.
  • Demonstrated experience in thermal and fluid sciences and material characterization.
  • Proficiency in Ansys Fluent or similar CFD software, Abaqus or similar FEA software, and CAD and meshing tools.
  • Proven problem-solving ability including root cause analysis and corrective action development.
  • Ability to communicate and engage effectively with employees at all levels of the organization.

12. Senior CFD Engineer (Oil and Gas Flow Assurance)

Ensuring project objectives are met and results are clearly communicated to clients, the Senior CFD Engineer oversees flow assurance studies, develops work scopes and CTRs, and acts as client representative at technical meetings within the oil and gas industry. Operating across multiphase flow, heat transfer, and fluid dynamics domains, this role delivers expert analysis and presentations that directly support client confidence and project outcomes.


Strategic Responsibilities

  • Ensure work is undertaken in accordance with the company quality management system.
  • Ensure project objectives assigned by the Project Lead, Manager, and client are achieved.
  • Develop work scopes and CTRs.
  • Prepare and deliver effective presentations to clients that summarize key results.
  • Act as client representative at technical meetings with third parties.
  • Support studies, research, and other developmental work.


Qualifications and Experience

  • Recognised qualification in a relevant engineering discipline or extensive experience in a relative field.
  • Advanced degree focusing in multiphase flow, fluid dynamics, heat transfer, or applied mathematics is desirable.
  • 5 or more years of flow assurance experience in the oil and gas industry with a strong technical background.
  • Demonstrated proficiency in ANSYS Fluent, CFX, Star CCM+, or open-source software such as OpenFOAM.
  • Programming and coding skills in VBA and Python, and data analytics skills are advantageous.
  • Local market knowledge is advantageous.

13. CFD Engineer (Naval Architecture and Marine Design)

As the CFD Engineer, this role provides essential hydrodynamic simulation support to the Naval Architect, coordinating CFD scope across multiple ship and yacht building projects while resolving unique design challenges. The marine engineering team relies on this work to maintain up-to-date analytical expertise and deliver well-communicated findings that inform design decisions across the full project portfolio.


Job Functions

  • Support the Naval Architect by providing essential information regarding ship design.
  • Coordinate the CFD scope across multiple projects.
  • Collect information, make agreements, report findings, and communicate results to peers.
  • Keep knowledge and expertise up to date by following new developments in the field.
  • Perform a wide range of assignments including advice and design solutions while focusing on unique engineering challenges.


Requirements

  • MSc degree in Mechanical Engineering, Naval Architecture, or a related field.
  • At least 4 years of experience with CFD within ship or yacht building.
  • Experience with CFD simulations and software such as Star-CCM+ or FINE Marine.
  • Knowledge of 3D modeling software, with NX being an advantage.
  • Independent, proactive, and strong analytical thinking.

14. CFD Engineer (Aerodynamic Methodology Development)

CFD Engineer refines and automates the full CFD workflow for the Aerodynamic department, from CAD requirements and meshing through simulation methodology and post-processing, while benchmarking emerging tools and collaborating with external research partners. The work directly supports both the aerodynamic development teams and the correlation group by delivering CFD expertise and new methodologies that close the gap between simulation and experimental results.


Delivery Expectations

  • Perform CFD R&D activities encompassing exploration of new simulation methodologies, numerical methods, and benchmarking of new software.
  • Collaborate with universities and external partners to exploit the latest advancements in CFD technology.
  • Further develop and automate the CFD workflow from CAD requirements definition through simulation methodology and post-processing.
  • Maintain a strong link with aerodynamic development teams to understand their needs and requirements.
  • Collaborate with the correlation team to provide CFD expertise in solving correlation challenges.


Technical Qualifications

  • Degree in aeronautical engineering, with post-graduate qualification or research using CFD techniques and numerical methods preferred.
  • Knowledge and experience in CFD software development using high-level programming languages.
  • Proficiency in Linux environment, shell scripting, Java, Python, and C++, with experience in OpenFOAM code development being an advantage.
  • Experience using industrial flow solvers such as CCM+, Fluent, or OpenFOAM, and CAD packages.
  • Proven fundamental understanding of fluid mechanics and high standard of technical ability.
  • Self-motivated team player with initiative, excellent problem-solving skills, and the ability to work under pressure to tight deadlines.
  • Flexible approach to working hours and strong communication skills.

15. CFD Engineer (Vertical Pump R&D Product Engineering)

CFD Engineer manages corporate R&D projects and product engineering for vertical pumps at the Taneytown Operation, translating design strategy into actionable objectives that drive standardization, modularization, and global competitiveness. The work directly supports long-term business growth by establishing engineering networks, coaching team members, and ensuring vertical pump designs meet safety standards and market requirements.


Ownership Areas

  • Lead corporate R&D projects from a technical standpoint, ensuring outputs meet technical and commercial requirements within specified timeframes.
  • Drive rationalization and elimination of more than 30% of current design variants.
  • Translate the design strategic plan into actionable strategies with clear objectives and deliverables for long-term business growth.
  • Establish engineering networks and maintain strong working relationships with the global engineering community.
  • Drive product competitiveness by leveraging cross-functional groups including product management, supply chain, engineering, and manufacturing.
  • Coach and mentor team members within an environment of ethics, integrity, and trust.
  • Work on design modularity of vertical pumps focusing on standardization, modularization, and market requirements.


Experience and Qualifications

  • Bachelor's degree in Mechanical or Industrial Engineering with a focus on fluid dynamics and mechanics.
  • 5 or more years of experience with turbomachinery, specifically with standard vertical pumps with modular designs.
  • Experience in Design to Value projects focused on standardization and modularization.
  • Proficiency in SolidWorks and programming experience in Visual Basic or similar tools.
  • Customer-oriented with experience handling warranties and field issues.
  • Fluent in English, both verbal and written, with additional languages being a plus.
  • Strong interpersonal, communication, and teamwork skills with creativity, persistence, and a service mentality.

16. CFD Engineer (Combustion and Heat Transfer R&D)

CFD Engineer sets up and executes CFD and conjugate heat transfer analyses across all product lines, serving as a technical consultant to internal and external customers on flow, sprays, and combustion while leading R&D programs and developing engineering guidelines. The work directly supports consistent engineering standards, documentation quality, and the technical development of engineering staff across project teams.


Project Responsibilities

  • Set up and execute CFD and conjugate heat transfer analyses for all product lines in collaboration with project and FEA teams.
  • Serve as a consultant to internal and external customers on flow and heat transfer, sprays, and combustion.
  • Train and support engineers in the application of CFD and related analysis tools.
  • Participate in and lead R&D programs and develop engineering tools and guidelines.
  • Ensure consistent engineering standards, processes, and documentation methods are used across project deliverables.
  • Prepare and review technical project work including schematics, layouts, algorithms, and test plans by applying engineering principles.


Education and Experience

  • PhD in Mechanical Engineering or a related discipline with a focus on CFD, with post-doctoral or industry experience preferred.
  • In-depth knowledge of CFD algorithms, turbulence models, multi-phase flow methods, and FEA methods for structures.
  • In-depth knowledge of fluid mechanics and heat transfer in fluids.
  • Experience with atomization, sprays, combustion, cavitation, two-phase flows, and flow boiling.
  • Proficiency in programming languages such as Python, VBA, C, and C++.
  • Excellent oral presentation and technical writing skills.

17. CFD Engineer (Fluids Software Product Management)

CFD Engineer strengthens the ANSYS Fluids product line by managing moderate to large-sized software development projects, coordinating product planning across business units, and driving customer business development to meet unit metrics. Success in the position means leading a geographically distributed team of software professionals through the full product lifecycle, from requirements elaboration and UX design through quality assurance and release.


Executive Functions

  • Manage moderate to large-sized software development projects within the FBU product line.
  • Coordinate product planning efforts across business units.
  • Drive customer business development to meet business unit metrics.
  • Facilitate communication upward, outward, and within the project team including project status and technical information.
  • Manage personnel activities, mentor, and motivate team members.
  • Participate in staff recruitment, development, and education including technical, industry, and soft skills development.


Background and Experience

  • Bachelor's degree or higher in Engineering, Computer Science, or a related field.
  • Minimum 10 years of experience with at least 3 years in a management role and 7 years in a technical role.
  • Proven experience building enterprise software products and leading full-stack enterprise software development projects.
  • In-depth experience in requirements elaboration, research and analysis, project planning, UX design, and quality assurance.
  • Excellent ability to manage, mentor, and coach a team of software professionals to support their career growth.
  • Excellent organizational, leadership, decision-making, and communication skills. 

Editorial Process and Content Quality

This content is developed by the Lamwork Editorial Team using structured analysis of real-world job data, skill requirements, and hiring patterns.

Research framework by Lam Nguyen, Founder & Editorial Lead.

Reviewed by Thanh Huyen, Managing Editor.

Learn more about our editorial standards.