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Ansys Cfx Jobs (NOW HIRING)

Experience using 3-D Solid Modeling software (SolidWorks), Structural FEA (SolidWorks Simulation), CFD (ANSYS CFX, FLUENT, and SolidWorks Flow Simulation), MATLAB, and Microsoft Office products.

Experience using 3-D Solid Modeling software (SolidWorks), Structural FEA (SolidWorks Simulation), CFD (ANSYS CFX, FLUENT, and SolidWorks Flow Simulation), MATLAB, and Microsoft Office products.

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Ansys Cfx information

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$11K

$93K

$132K

How much do ansys cfx jobs pay per year?

As of Jun 30, 2026, the average yearly pay for ansys cfx in the United States is $93,015.00, according to ZipRecruiter salary data. Most workers in this role earn between $85,500.00 and $110,000.00 per year, depending on experience, location, and employer.

What is the difference between Ansys Cfx vs CFD Engineer?

AspectAnsys CfxCFD Engineer
Primary RoleSimulation software for fluid dynamicsDesign and analyze fluid flow systems
Required SkillsCFD software proficiency, engineering fundamentalsCFD software, engineering principles, problem-solving
Work EnvironmentSoftware development, simulation setupField testing, system design, analysis
CertificationsRelevant engineering degrees, CFD software trainingEngineering degree, CFD certification often preferred

While Ansys Cfx is a specialized simulation software used by CFD Engineers, the role of a CFD Engineer involves applying CFD tools like Ansys Cfx to solve engineering problems. Ansys Cfx is a technical tool, whereas CFD Engineers utilize it within broader engineering projects to optimize designs and analyze fluid flow systems.

What are the key skills and qualifications needed to thrive as an Ansys CFX Engineer, and why are they important?

To thrive as an Ansys CFX Engineer, you need a solid background in fluid dynamics, thermodynamics, and engineering principles, typically supported by a degree in mechanical or aerospace engineering. Proficiency in Ansys CFX software, computational fluid dynamics (CFD) tools, and relevant programming languages like Python or MATLAB is essential. Strong analytical thinking, attention to detail, and effective communication skills help you interpret simulation results and collaborate across multidisciplinary teams. These skills ensure accurate modeling, efficient problem-solving, and successful project outcomes in simulation-driven environments.

What is Ansys CFX and what is it used for?

Ansys CFX is a high-performance computational fluid dynamics (CFD) software tool used to model and analyze fluid flow, heat transfer, and associated phenomena. It is widely used by engineers and scientists in industries such as aerospace, automotive, chemical processing, and energy to simulate and optimize the behavior of fluids in complex systems. With advanced turbulence modeling, multiphase flow capabilities, and robust solver technology, Ansys CFX helps users design more efficient products and processes while reducing the need for costly physical prototyping.

What are some common challenges faced by engineers working with Ansys CFX, and how can they be addressed?

Engineers using Ansys CFX often encounter challenges such as setting up complex boundary conditions, managing large computational models, and ensuring solution convergence. Addressing these issues typically involves thorough pre-processing, such as refining the mesh in critical regions, and leveraging built-in diagnostic tools to monitor simulation progress. Collaboration with experienced team members and regular training on the latest software updates can also help users overcome technical hurdles and improve workflow efficiency.
More about Ansys Cfx jobs
What job categories do people searching Ansys Cfx jobs look for? The top searched job categories for Ansys Cfx jobs are:
Infographic showing various Ansys Cfx job openings in the United States as of June 2026, with employment types broken down into 3% Internship, 45% Full Time, 11% Part Time, 1% Temporary, and 40% Contract. Highlights an 91% Physical, 5% Hybrid, and 4% Remote job distribution, with an average salary of $93,015 per year, or $44.7 per hour.
Senior Engineer - Advanced Programs Aerodynamic Design

Senior Engineer - Advanced Programs Aerodynamic Design

GE Aerospace

Evendale, OH • On-site

$100K - $137K/yr

Full-time

Posted 25 days ago


GE Aerospace rating

8.9

Company rating: 8.9 out of 10

Based on 173 frontline employees who took The Breakroom Quiz

5th of 60 rated aerospace companies


Job description

Job Description Summary
The Advanced Program section within GE Aerospace's Edison Works division is responsible for the development, design, testing, vehicle integration, and support of engine inlet and exhaust system technologies for new engine concepts and development programs. Technology focus areas include augmentors, exhaust nozzles, High Speed flows, advanced engine inlet and exhaust systems, aero-thermal system optimization, integrated power-thermal management systems, and advanced material systems; all supporting the mission of delivering breakthrough propulsion technologies for advanced military applications.
The Advanced Program Aerodynamics Senior Engineer is responsible for technical leadership through all aspects of conceptual synthesis, technology development, detailed aerodynamic design, platform integration, and testing of advanced military propulsion technologies with a primary focus on augmentors, exhaust nozzles, and inlet systems. This role drives conceptual through detailed aerodynamic design utilizing flow path layout tools, computational fluid dynamics methods for reacting and non-reacting flows, experimental rig development, and full engine test support. All activities require close collaboration across multidisciplinary teams to mature technologies from early concept through fielded solutions for advanced military applications. Operating in a mission-based, fast-paced environment, the Senior Engineer provides technical leadership to both small focused and larger cross-functional teams for delivering innovative propulsion systems, and integrated power-thermal management systems that continually advance the future of military aviation.
Job Description
Essential Responsibilities:
  • Aerodynamic engineering ownership of military engine inlets, augmentors, and general exhaust systems, including design, analysis, rig development, and full engine testing
  • Support cross functional team for exhaust system design, testing, and support
  • Execution of complex technical projects, including program scoping, schedule, and financial management to meet business needs and customer deliverables
  • Execute individual and team projects using sound engineering principles while adhering to business standards, best practices, procedures, and product / program requirements
  • Complete technical and program operating reviews with senior leadership teams and customers
  • Strategically influence, coordinate, and lead teams through solving complex technical challenges
  • Develop action plans and proactively communicate with key stakeholders when executing development programs and responding to issues or problems
  • Participate in strategic planning activities and champion organizational initiatives
  • Proactively identify issues, proposed solutions, and engage with key technology and program leaders to drive problem resolution
  • Experience working within a lean operating model (e.g., GE Aerospace's FLIGHT DECK) to continuously improve safety, quality, delivery, and cost
  • Ability to work closely with airframer partners and government customers to define problems, develop data-driven solutions, and co-create proposals that deliver measurable safety, quality, delivery, and cost impact
  • Assure proper documentation of technical data generated for the assigned projects and/or tasks consistent with engineering policies and procedures

Qualifications/Requirements:
  • Bachelor of Science in Aerospace, Mechanical, or closely related engineering field
  • A minimum of 10 years of relevant aerodynamic or propulsion design experience
  • Ability to obtain and maintain an active US Government security clearance

Desired Characteristics:
  • Advanced degree in Aerospace or Mechanical Engineering with to fluid mechanics preferred
  • Proven experience in compressible flow aerodynamics, propulsion, and engine exhaust systems, including deep technical expertise in augmentors and exhaust nozzle design
  • Strong technical aptitude, system-level thinking, and desire to learn new skills
  • Experience with design and analysis software such as Siemens NX, Ansys Workbench, Ansys CFX, Ansys Fluent, Hypermesh, Python, etc.
  • Experience with propulsion exhaust system rig and engine testing
  • Effective in contributing to a structured, cross functional teamwork environment
  • Excellent written and oral communication skills
  • Strong familiarity with aerodynamic design principles, analysis tools, test methods, and end-to-end engineering processes

This role requires access to U.S. export-controlled information. Therefore, employment will be contingent upon the ability to prove that you meet the status of a U.S. Person as one of the following: U.S. lawful permanent resident, U.S. Citizen, have been granted asylee or refugee status (i.e., a protected individual under the Immigration and Naturalization Act, 8 U.S.C. 1324b(a)(3)).
Additional Information
GE Aerospace offers a great work environment, professional development, challenging careers, and competitive compensation. GE Aerospace is an Equal Opportunity Employer. Employment decisions are made without regard to race, color, religion, national or ethnic origin, sex, sexual orientation, gender identity or expression, age, disability, protected veteran status or other characteristics protected by law.
GE Aerospace will only employ those who are legally authorized to work in the United States for this opening. Any offer of employment is conditioned upon the successful completion of a drug screen (as applicable).
Relocation Assistance Provided: Yes

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