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Phd Cfd Computational Engineer Jobs (NOW HIRING)

Position requires experience or internship in the following: 1. Working with CFD (computational ... complex engineering systems and simulations. 6. Technical writing and presenting engineering ...

PhD in Computational Science and Engineering, Mechanical Engineering or Aerospace Engineering * Expertise in one or more of the following topics: * Linear solvers and convergence acceleration of CFD ...

PhD in Computational Science and Engineering, Mechanical Engineering or Aerospace Engineering * Expertise in one or more of the following topics: * Linear solvers and convergence acceleration of CFD ...

PhD in Computational Science and Engineering, Mechanical Engineering or Aerospace Engineering * Expertise in one or more of the following topics: * Linear solvers and convergence acceleration of CFD ...

CFD Engineer - AI Task Designer About the Role What if your expertise in computational fluid dynamics could teach AI to reason about aerodynamics, boundary conditions, and flow physics - without you ...

CFD Engineer - AI Task Designer About the Role What if your expertise in computational fluid dynamics could teach AI to reason about aerodynamics, boundary conditions, and flow physics - without you ...

CFD Engineer - AI Task Designer About the Role What if your expertise in computational fluid dynamics could teach AI to reason about aerodynamics, boundary conditions, and flow physics - without you ...

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Phd Cfd Computational Engineer information

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How much do phd cfd computational engineer jobs pay per year?

As of Jun 25, 2026, the average yearly pay for phd cfd computational engineer 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 are some typical collaboration opportunities for a PhD CFD Computational Engineer within a multidisciplinary team?

As a PhD CFD Computational Engineer, you frequently collaborate with mechanical engineers, software developers, and experimental scientists to ensure simulation models accurately reflect real-world scenarios. You may work closely with design teams to optimize product performance based on CFD results, and with IT specialists to implement high-performance computing solutions. Effective communication and teamwork are vital, as your input often influences design choices, testing procedures, and project timelines.

What engineers make $500,000?

Highly experienced engineers in specialized fields such as petroleum, aerospace, or software engineering can earn $500,000 or more annually, often through a combination of base salary, bonuses, and stock options. Senior roles requiring advanced skills, certifications, and leadership responsibilities tend to have the highest compensation levels.

What engineers make $300,000 a year?

Senior engineers in specialized fields such as petroleum engineering, software engineering, and certain aerospace or nuclear engineers can earn $300,000 or more annually, especially with extensive experience, advanced skills, and leadership roles. High compensation often involves working in high-demand industries, managing large teams, or holding executive-level responsibilities.

What can I do with a PhD in computational chemistry?

A PhD in computational chemistry prepares individuals for roles such as computational chemist or research scientist, where they develop and apply computer models to study chemical systems. These professionals often work in academia, pharmaceuticals, or materials science, utilizing skills in programming, molecular modeling, and data analysis to solve complex chemical problems. Advanced knowledge of software tools like Gaussian or VMD and experience with high-performance computing are valuable in this field.

What is the difference between Phd Cfd Computational Engineer vs Mechanical Engineer?

AspectPhd Cfd Computational EngineerMechanical Engineer
Required CredentialsPhD in Mechanical Engineering, Aerospace, or related field; CFD certificationsBachelor's or Master's in Mechanical Engineering; some roles may require certifications
Work EnvironmentResearch labs, simulation centers, aerospace or automotive industriesDesign offices, manufacturing plants, R&D departments
Industry UsageSpecialized CFD modeling, simulation, and analysis for fluid dynamics problemsDesign, analysis, and testing of mechanical systems, including fluid systems

The main difference is that Phd Cfd Computational Engineers focus on advanced fluid dynamics simulations and research, often requiring a PhD and specialized CFD expertise. Mechanical Engineers have a broader scope, including design and manufacturing, with less emphasis on specialized CFD work. Both roles are vital in industries like aerospace, automotive, and energy, but they differ in their focus and level of specialization.

What is a PhD CFD Computational Engineer?

A PhD CFD Computational Engineer is an expert who holds a doctoral degree and specializes in Computational Fluid Dynamics (CFD). They use advanced mathematics, physics, and computer simulations to analyze fluid flows and related physical phenomena. These engineers develop and apply CFD models to solve complex engineering problems in industries such as aerospace, automotive, and energy. Their work often involves research, code development, and optimization of fluid systems to improve performance and efficiency.

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

To thrive as a PhD CFD Computational Engineer, you need deep expertise in fluid dynamics, numerical methods, and advanced programming, typically backed by a doctoral degree in engineering or a related field. Familiarity with CFD software (such as ANSYS Fluent, OpenFOAM), high-performance computing environments, and coding languages like C++ or Python is essential. Strong problem-solving skills, attention to detail, and effective communication are valuable soft skills in this role. These competencies enable you to develop accurate simulations, interpret complex data, and collaborate effectively on multidisciplinary engineering projects.

Are CFD engineers in demand?

CFD engineers are in high demand across industries such as aerospace, automotive, and energy due to their expertise in fluid dynamics simulation and modeling. The role often requires proficiency in computational tools like ANSYS or OpenFOAM and a strong background in physics and programming, making it a valuable specialization in engineering fields.
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RESEARCH ENGINEER - SR. RESEARCH ENGINEER - Computational Combustion Engineer

SWRI

San Antonio, TX • On-site

Full-time

Posted 28 days ago


Job description

  • Support the development, analysis, and testing of power generation and propulsion systems, with a specific focus on combustion applications.
  • Engage in the development of advanced computational models to explore complex combustion phenomena, contributing to cutting-edge research in thermofluids, power generation, and propulsion systems.
  • Utilize expertise in heat transfer, fluid dynamics, gas dynamics, and combustion processes to optimize designs and improve performance in power generation and propulsion systems.
  • Leverage state-of-the-art Computational Fluid Dynamics (CFD) software, including Ansys Fluent, Converge, and OpenFOAM to simulate flow conditions and analyze combustion processes in power generation and propulsion systems.
  • Integrate experimental insights with simulation data to validate models and develop predictive capabilities for combustion processes in power generation and propulsion systems operating under extreme conditions.

  • Provide cross-disciplinary support to multiple projects within the field of combustion, focusing mainly on computational tasks.
  • Conduct design, optimization, and validation of combustion processes using CFD.
  • Contribute to the design of combustion processes for power generation and propulsion systems.
  • Assist in executing experimental test campaigns, including data acquisition, processing, and analysis, to support model validation.
  • Be a problem solver that exercises creativity and independent judgement in developing approaches to address a wide range of technical challenges.

  • Requires a Bachelors, Masters or a PhD in Mechanical Engineering, Aerospace Engineering, Chemical Engineering, or related engineering degree.
  • 5 years relevant professional experience required with Bachelors degree, 3 years relevant professional experience required with Masters degree, and 1 year of related experience required with PhD.
  • 1-5 years: Demonstrated experience in CFD simulations of thermofluids and combustion processes. Experience with supersonic and/or hypersonic flow simulations is preferred but not required.
  • 1-5 years: Experience in computationally-aided design of propulsion and power generation systems. Experience in designing system components is also valued.
  • 1-5 years: Demonstrated proficiency in using CFD software such as Ansys Fluent, Converge, STAR-CCM+, or OpenFOAM for simulating and analyzing combustion processes. Experience with additional simulation tools is preferred but not required.
  • Experimental experience with combustion processes and mechanical design is highly desirable but not mandatory. MS or PhD degrees in engineering are preferred, but not required. Relevant degrees will also be considered.
  • A valid/clear driver's license is required.