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Fluid Flow Engineer Jobs (NOW HIRING)

Intern-Flow Assurance

Houston, TX · On-site

$26.18 - $37.09/hr

... Engineering program with an expected graduation date of December 2026 - May 2028. Experience: * Basic knowledge of fluid flow and thermodynamic * Communication skills * Multi-tasking skill Academic ...

Showing results 41-60

Fluid Flow Engineer information

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$94.5K

$130.5K

How much do fluid flow engineer jobs pay per year?

As of Sep 14, 2026, the average yearly pay for fluid flow engineer in the United States is $128,141.00, according to ZipRecruiter salary data. Most workers in this role earn between $129,000.00 and $129,000.00 per year, depending on experience, location, and employer.

What is a fluid flow engineer?

Fluid Flow Engineers are professionals who specialize in the study and application of fluid dynamics, which involves the movement of liquids and gases. They analyze, design, and optimize systems where fluid flow is critical, such as pipelines, HVAC systems, water treatment plants, and engines. Their work often involves using computational simulations and physical experiments to ensure efficient and safe fluid transport. Fluid Flow Engineers are essential in industries like energy, aerospace, chemical processing, and environmental engineering.

What are the key skills and qualifications needed to thrive as a fluid flow engineer?

To thrive as a Fluid Flow Engineer, you need a solid background in fluid mechanics, thermodynamics, and mathematics, typically supported by a degree in mechanical, chemical, or aerospace engineering. Familiarity with computational fluid dynamics (CFD) software, such as ANSYS Fluent or OpenFOAM, and experience with simulation and modeling tools are essential. Strong analytical thinking, attention to detail, and effective communication skills help you interpret data and collaborate with cross-functional teams. These competencies are crucial for designing efficient systems and solving complex flow-related engineering challenges.

What are some common challenges fluid flow engineers face when working on multidisciplinary projects?

Fluid Flow Engineers often collaborate with professionals from mechanical, civil, and chemical engineering backgrounds, which can present challenges related to integrating different technical requirements and communication styles. Balancing the needs of various stakeholders, such as process efficiency, safety, and cost-effectiveness, requires strong problem-solving and interpersonal skills. Additionally, accurately modeling complex fluid behavior, especially in large or novel systems, can be demanding and may require advanced simulation tools and iterative testing.

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

AspectFluid Flow EngineerMechanical Engineer
Required CredentialsBachelor's in Mechanical, Civil, or Chemical Engineering; often includes fluid dynamics courseworkBachelor's in Mechanical Engineering; broader focus including thermodynamics, mechanics
Work EnvironmentDesign labs, simulation software, industrial plants, research facilitiesManufacturing, product design, HVAC, automotive, aerospace
Industry UsageOil & gas, energy, aerospace, water treatmentAutomotive, aerospace, manufacturing, consumer products

Fluid Flow Engineers specialize in analyzing and optimizing fluid movement within systems, often focusing on fluid dynamics and related simulations. Mechanical Engineers have a broader scope, working on various mechanical systems, including fluid systems. Both roles require similar educational backgrounds but differ in focus and industry applications.

What are popular job titles related to Fluid Flow Engineer jobs?

For Fluid Flow Engineer jobs, the most frequently searched job titles are:

Infographic showing various Fluid Flow Engineer job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 89% Full Time, 7% Part Time, and 3% Contract. Highlights an 84% Physical, 5% Hybrid, and 11% Remote job distribution, with an average salary of $128,141 per year, or $61.6 per hour.

Principal CFD Modeling Engineer

Baltimore, MD • On-site

Jensen Hughes
Professional, Scientific, and Technical Services • 1 - 5K employees

Full-time

Re-posted 27 days ago


Job description

Company Overview

Throughout our worldwide network of experts, clients and communities, we are renowned for our leadership in fire protection engineering - a legacy of responsibility we have proudly upheld since 1939. Today, our expertise extends broadly across closely related security and risk-based fields - from accessibility consulting and risk analysis to process safety, forensic investigations, security risk consulting, emergency management, digital innovation and more.

Our engineers and consultants collaborate to solve complex safety and security challenges, ensuring our clients can protect what matters most. For over 80 years, we have helped mitigate risks that threaten lives, property and reputations. Through technology, expertise and industry-leading research, we remain dedicated to our purpose of making our world safe, secure and resilient.

At Jensen Hughes, we believe that creating and sustaining a culture of trust, integrity and professional growth starts with putting our people first. Our employees are our greatest strength, and we value the unique perspectives and talents they bring to our organization. 

Our wide range of Global Employee Networks connect people from across the organization, supporting career development and providing forums for individuals to share experiences on topics they're passionate about. Together, we are cultivating a connected culture where everyone has the opportunity to learn, grow and succeed together.

Job Overview

Jensen Hughes is seeking a Principal CFD Modeling Engineer to serve as a senior technical leader in advanced fire and thermal-fluid modeling. This role is designed for an expert practitioner with deep mastery of the Fire Dynamics Simulator (FDS) who is motivated by solving complex, real-world fire and fluid-flow problems through rigorous, physics-based modeling and experimental validation.

In this role, you will operate at the intersection of advanced computation, fire testing, and applied research, influencing both project outcomes and the evolution of company-wide modeling methodologies. You will be trusted to lead technically challenging work, mentor other engineers, and represent Jensen Hughes as a thought leader with clients and the broader fire science community.

Responsibilities

  • Lead the development, execution, and refinement of high-fidelity CFD models using FDS for fire dynamics, fluid flow, and heat transfer applications

  • Partner closely with experimental testing teams to design test programs, select instrumentation, and produce high-quality validation datasets

  • Analyze experimental results and integrate findings into model validation and improvement frameworks

  • Provide technical leadership and mentorship to other engineers, helping shape best practices in CFD modeling and fire science

  • Present technical work to clients, industry groups, and at professional conferences

  • Author and review technical reports, proposals, and peer-reviewed publications

  • Support strategic initiatives related to physics-based modeling, test programs, and methodology development

Requirements and Qualifications

  • Graduate degree in engineering with a focus on thermal-fluid sciences

  • 15+ years of professional experience applying CFD tools (including FDS) to fire dynamics, heat transfer, and fluid-flow problems across commercial and applied research projects

    • Directly relevant post-graduate research may count for up to five years of this experience

  • Deep working knowledge of the FDS Validation Guide, Technical Reference Guide, and User Guide

  • Advanced understanding of topics such as: Radiation transport equations, Gas-phase absorption coefficients, Pyrolysis modeling within the FDS framework

  • Demonstrated experience using experimental fire test data to validate and refine numerical models

  • Knowledge of numerical modeling approaches and their limitations, particularly for large-scale or outdoor fire scenarios

  • Proficiency in Python and Fortran or similar scientific programming languages

  • Strong analytical, documentation, and communication skills, including the ability to clearly explain complex modeling results to technical and non-technical audiences

  • Ability to work independently while also thriving in a collaborative, multidisciplinary technical environment

  • U.S. Citizen required.

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