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Fluid Dynamic Engineer Jobs (NOW HIRING)

Fluid Dynamics Engineer

San Leandro, CA ยท On-site

$110K - $160K/yr

As the Fluid Dynamics Engineer, you'll lead the design, simulation, and operational integration of these large-scale fluid systems from concept through commissioning. Core Responsibilities * System ...

$61 - $102/hr

We are seeking a simulation-focused Mechanical Engineer with strong expertise in CFD, chemical ... of fluid mechanics, thermodynamics, heat transfer, mass transfer, and gas flow dynamics.

Fluid Dynamicist

Portland, OR ยท On-site

$110K - $152K/yr

About the Job As a Fluid Dynamicist, you will help develop, validate, and apply the fast-running ... If you are an excellent engineer, regardless of your background, we want you to apply.

Fluid Dynamicist

Portland, OR ยท On-site

$110K - $152K/yr

About the Job As a Fluid Dynamicist, you will help develop, validate, and apply the fast-running ... If you are an excellent engineer, regardless of your background, we want you to apply.

Fluid Dynamicist

Portland, OR ยท On-site

$110K - $152K/yr

About the Job As a Fluid Dynamicist, you will help develop, validate, and apply the fast-running ... If you are an excellent engineer, regardless of your background, we want you to apply.

Senior CFD / Fluid Dynamics Engineer We are seeking an experienced and versatile Senior CFD / Fluid Dynamics Engineer to provide advanced computational fluid dynamics and multi-physics analysis ...

Hydraulic & Hydrology Engineer

Houston, TX

$77K - $101K/yr

Minimum of 1 to 2 years of working experience in hydrology, hydraulics, fluid dynamic simulation or a related field; 2 to 5 years working experience preferred. Engineer-in-Training (EIT ...

Hydraulic & Hydrology Engineer

Houston, TX ยท On-site

$77K - $101K/yr

Minimum of 1 to 2 years of working experience in hydrology, hydraulics, fluid dynamic simulation or a related field; 2 to 5 years working experience preferred. * Engineer-in-Training (EIT ...

Bachelor's or Master's degree in Mechanical Engineering; with focus on fluid dynamics is preferred. * Experience: 5+ years of experience (including internships or Formula Student/FSAE experience) in ...

Bachelor's or Master's degree in Mechanical Engineering; with focus on fluid dynamics is preferred. * Experience: 5+ years of experience (including internships or Formula Student/FSAE experience) in ...

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Fluid Dynamic Engineer information

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$25K

$86.1K

$146K

How much do fluid dynamic engineer jobs pay per year?

As of Aug 26, 2026, the average yearly pay for fluid dynamic engineer in the United States is $86,071.00, according to ZipRecruiter salary data. Most workers in this role earn between $55,000.00 and $108,500.00 per year, depending on experience, location, and employer.

What does a fluid dynamic engineer do?

A Fluid Dynamic Engineer specializes in studying and analyzing the behavior of fluids (liquids and gases) and their interactions with surrounding environments. They use principles of physics and mathematics to design and optimize systems such as aircraft, turbines, pipelines, and automotive components, ensuring efficient fluid flow and performance. Their work often involves computer simulations, laboratory experiments, and collaborating with multidisciplinary teams to solve complex engineering problems.

How does a fluid dynamic engineer typically collaborate with other engineering disciplines during a project?

Fluid Dynamic Engineers often work closely with mechanical, aerospace, and chemical engineers to ensure that fluid flow considerations are integrated into overall system designs. Collaboration is essential during the conceptual and design phases, where input from various specialists helps optimize performance and solve multidisciplinary challenges. Regular meetings, joint simulations, and shared design reviews are common, fostering a team-oriented environment that values diverse expertise. Effective communication and adaptability are key, as solutions often require balancing fluid dynamics with structural, thermal, and manufacturing requirements.

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

To thrive as a Fluid Dynamic Engineer, you need a strong background in fluid mechanics, mathematics, and engineering principles, usually supported by a degree in mechanical, aerospace, or chemical engineering. Familiarity with computational fluid dynamics (CFD) software, simulation tools like ANSYS Fluent or OpenFOAM, and relevant certifications are typically required. Analytical thinking, problem-solving abilities, and effective teamwork are essential soft skills that differentiate top performers. These skills and qualifications are crucial for accurately modeling, analyzing, and optimizing fluid systems across various industries.

What is the difference between Fluid Dynamic Engineer vs Mechanical Engineer?

AspectFluid Dynamic EngineerMechanical Engineer
Required CredentialsBachelor's or Master's in Mechanical, Aerospace, or Fluid MechanicsBachelor's or Master's in Mechanical Engineering
Work EnvironmentResearch labs, aerospace, automotive, energy sectorsManufacturing, product design, HVAC, automotive
Industry UsageSpecializes in fluid flow, aerodynamics, hydrodynamicsBroader engineering tasks including mechanics, thermodynamics

Fluid Dynamic Engineers focus specifically on fluid flow analysis, aerodynamics, and hydrodynamics, often within aerospace, automotive, or energy industries. Mechanical Engineers have a broader scope, covering various mechanical systems, thermodynamics, and structural design. While both roles require similar educational backgrounds, Fluid Dynamic Engineers specialize in fluid-related applications, making their expertise more niche compared to general Mechanical Engineers.

More about Fluid Dynamic Engineer jobs

What states have the most Fluid Dynamic Engineer jobs?

States with the most job openings for Fluid Dynamic Engineer jobs include:

Infographic showing various Fluid Dynamic Engineer job openings in the United States as of August 2026, with employment types broken down into 1% As Needed, 83% Full Time, 14% Part Time, and 2% Contract. Highlights an 81% Physical, 2% Hybrid, and 17% Remote job distribution, with an average salary of $86,071 per year, or $41.4 per hour.

Senior CFD / Fluid Dynamics Engineer with Security Clearance

Associates Systems LLC

Titusville, FL โ€ข On-site

Other

Posted 4 days ago


Job description

Senior CFD / Fluid Dynamics Engineer We are seeking an experienced and versatile Senior CFD / Fluid Dynamics Engineer to provide advanced computational fluid dynamics and multi-physics analysis expertise for aerospace and spaceflight applications. The ideal candidate possesses a deep theoretical and practical understanding of continuum and non-continuum (rarefied) fluid dynamics, along with demonstrated expertise in modeling complex fluid and thermal-fluid systems and fluid interactions with planetary surfaces and particulate environments. The engineer will apply advanced analytical and computational methods to evaluate complex aerospace systems, assess system performance, investigate technical issues, and support engineering decisions. This role will collaborate closely with cross-functional engineering teams and may involve analysis ranging from component-level behavior to integrated spacecraft and mission-level performance. Key Responsibilities * Simulation & Modeling: Develop, execute, and assess high-fidelity 1D, 2D, and 3D CFD models for continuum regimes, including compressible/incompressible flow, multiphase flow, turbulence, cavitation, and conjugate heat transfer. * Apply appropriate modeling approaches to non-continuum and rarefied flow regimes, including slip, transitional, and free-molecular flow conditions. * System-Level Analysis: Model and analyze hydraulic and pneumatic systems, including transient flow behavior, valve dynamics, compressibility effects, pressure losses, and actuation response. * Model Selection & Technical Assessment: Determine appropriate analysis methods, modeling fidelity, boundary conditions, assumptions, and numerical approaches based on the engineering question, available data, and required level of confidence. * Validation & Correlation: Analyze and correlate simulation results with empirical test data, flight data, experimental results, or other available engineering evidence. Assess sources of disagreement and identify opportunities to improve model fidelity. * Independent Technical Assessment: Review and evaluate CFD models, analytical approaches, assumptions, results, and technical documentation developed by other engineers or organizations. Identify potential limitations, uncertainties, and technical risks. * Multi-Physics Analysis: Support analysis of interactions between fluid dynamics and other physical disciplines, including thermal, structural, propulsion, materials, and spacecraft systems. * Lunar Surface and Plume Interactions: Apply CFD and multi-physics methods to assess rocket plume interactions with the lunar surface, including regolith response, particle/dust entrainment and transport, surface erosion/ejecta generation, and potential impacts to spacecraft, payloads, sensors, and nearby assets. * Particle and Multiphase Transport: Apply appropriate computational methods to evaluate particle-laden flows, particulate transport, gas-surface interactions, and other phenomena associated with lunar and planetary surface environments. * Non-Continuum Flow Analysis: Apply kinetic theory approaches such as Direct Simulation Monte Carlo (DSMC) and Lattice Boltzmann Methods (LBM), where appropriate to the engineering problem. * Technical Problem Solving: Apply first-principles engineering analysis and computational methods to investigate complex or anomalous system behavior and develop technically defensible recommendations. * Technical Leadership: Provide technical guidance and mentoring to engineers performing fluid dynamics and CFD analyses and contribute to development of analysis methods, best practices, and modeling standards. * Technical Communication: Present complex analytical results, assumptions, uncertainties, and recommendations clearly to both technical and programmatic audiences. * Analysis Capability Development: Evaluate and recommend computational tools, modeling approaches, and analysis capabilities needed to address emerging engineering problems, including complex multi-physics and lunar surface interaction phenomena. Required Qualifications * Bachelorโ€™s, Masterโ€™s, or Ph.D. in Mechanical Engineering, Aerospace Engineering, Chemical Engineering, or a related engineering discipline. * 10+ years of professional experience in fluid dynamics modeling, numerical methods, CFD, and/or thermal-fluid system analysis. * Strong understanding of fluid dynamics fundamentals, including the Navier-Stokes equations, compressible and incompressible flow, turbulence modeling (RANS, LES, DES), multiphase flows, heat transfer, and non-continuum flow physics. * Demonstrated experience developing, evaluating, and validating CFD models for complex engineering systems. * Demonstrated ability to select appropriate modeling approaches and assess the accuracy, applicability, limitations, and uncertainty of computational results. * Demonstrated understanding of hydraulic and pneumatic system behavior, including pumps, compressors, check/control valves, manifolds, regulators, and fluid lines. * Experience working with spacecraft, launch vehicles, aerospace fluid systems, or other complex flight systems. * Experience collaborating across multiple engineering disciplines and evaluating system-level interactions and interfaces. * Working knowledge of NASA standards, practices, and requirements is highly desired. Preferred Software Tools & Technical Skills Candidates should possess experience with a selection of the following tools and environments: * CFD / Multi-Physics: Demonstrated proficiency with STAR-CCM+ or equivalent CFD software such as ANSYS Fluent, ANSYS CFX, or OpenFOAM. * 1D / System-Level Simulation: Experience with MATLAB/Simulink, Simscape Fluids, Siemens Amesim, Flownex, or equivalent tools. * Rarefied / Non-Continuum Flow: Experience with DSMC, Lattice Boltzmann, or other rarefied-flow analysis tools is highly desirable. * Pre/Post-Processing & CAD: Experience with geometry preparation, meshing, visualization, and post-processing tools appropriate for high-fidelity CFD analysis. * Scripting & Programming: Python, MATLAB, C/C++, Bash/Linux, or equivalent programming environments. * High-Performance Computing: Experience running large-scale computational analyses in HPC environments and familiarity with job scheduling systems such as SLURM or PBS. Preferred Qualifications * Experience supporting spaceflight hardware or systems from concept through qualification, launch, and operations. * Experience with rocket plume interactions with planetary or lunar surfaces, including regolith erosion, particle/dust entrainment, ejecta transport, or related surface interaction phenomena. * Experience with particle-laden flows, multiphase flow, particulate transport, or gas-surface interactions. * Experience with rarefied gas dynamics, vacuum systems, plume interactions, contamination transport, or spacecraft environmental analysis. * Experience with thermal-fluid systems, propulsion systems, environmental control systems, pressurized systems, or other spacecraft fluid systems. * Experience correlating computational models with ground test, qualification test, or flight data. * Experience developing or reviewing engineering analysis methods, modeling standards, or verification approaches. * Demonstrated technical leadership in computational fluid dynamics or thermal-fluid analysis. * Experience mentoring engineers and providing technical direction on complex analysis problems.