1

Internship Python Mechanical Engineering Jobs in Oregon

Fluid Dynamicist

Portland, OR ยท On-site

$18.25 - $22/hr

Strong foundation in fluid mechanics, marine hydrodynamics, waves, rigid body dynamics, and physics-based modeling. * Strong proficiency in Python for scientific computing, engineering analysis, data ...

Fluid Dynamicist

Portland, OR

$18.25 - $22/hr

Strong foundation in fluid mechanics, marine hydrodynamics, waves, rigid body dynamics, and physics-based modeling. * Strong proficiency in Python for scientific computing, engineering analysis, data ...

... or Mechanical Engineering from an ABET-accredited program * Strong academic record, and demonstrated intellectual curiosity preferred * Internship or co-op experience in the engineering or public ...

... or Mechanical Engineering from an ABET-accredited program * Strong academic record, and demonstrated intellectual curiosity preferred * Internship or co-op experience in the engineering or public ...

MS in Computer Science, Aerospace, Electrical, or Mechanical Engineering. Experience with any of the following: Linux, CMake, Python, or Git. Familiarity with C#. Employment Type: Full Time

Preference for students who have completed 3+ years of coursework by the internship start date * Experience with object-oriented programming (e.g., C#, Java, Python, C++) * Strong analytical and ...

next page

Showing results 1-20

Internship Python Mechanical Engineering information

What are Internship Python Mechanical Engineering positions?

Internship Python Mechanical Engineering positions are temporary roles for students or recent graduates in mechanical engineering, where they gain practical experience by applying Python programming to engineering problems. These internships typically involve tasks such as data analysis, automation, simulation, and modeling using Python. Interns work under the supervision of experienced engineers and may contribute to ongoing projects, helping them develop both technical and professional skills. These positions are valuable for building resumes and exploring career paths in industries that combine mechanical engineering with programming.

What are the key skills and qualifications needed to thrive as an Internship Python Mechanical Engineering, and why are they important?

To thrive in an Internship Python Mechanical Engineering role, you typically need a foundation in mechanical engineering principles, a working knowledge of Python programming, and current enrollment in or recent graduation from an engineering program. Familiarity with CAD software, simulation tools like ANSYS or SolidWorks, and data analysis libraries in Python (such as NumPy and Matplotlib) is often required. Strong problem-solving abilities, effective communication, and teamwork skills help you stand out in collaborative and project-driven environments. These competencies ensure you can contribute to technical projects, analyze engineering data, and support innovation within multidisciplinary teams.

What is the difference between Internship Python Mechanical Engineering vs Mechanical Engineering Intern?

AspectInternship Python Mechanical EngineeringMechanical Engineering Intern
Required CredentialsBasic programming skills, knowledge of Python, relevant courseworkMechanical engineering coursework, basic technical skills
Work EnvironmentSoftware development, data analysis, simulation projectsDesign labs, manufacturing settings, testing environments
Industry UsageTech companies, engineering firms with software componentsManufacturing, automotive, aerospace industries
Common Search/ComparisonFocus on programming and software skills in mechanical projectsFocus on traditional mechanical engineering tasks

The Internship Python Mechanical Engineering typically emphasizes programming skills in Python applied to mechanical projects, often within software or tech-driven environments. In contrast, a Mechanical Engineering Intern focuses on traditional mechanical design, testing, and manufacturing tasks. Both roles are valuable in engineering fields but differ in skill requirements and work settings.

What types of projects do interns typically work on during a Python Mechanical Engineering internship?

During a Python Mechanical Engineering internship, interns are often assigned to projects that integrate programming skills with mechanical engineering concepts. Typical tasks may include automating data analysis from experiments, developing scripts to optimize simulation processes, or creating tools for design validation. Interns usually collaborate closely with engineers and data analysts, gaining exposure to real-world engineering problems and the opportunity to contribute meaningfully to ongoing projects. This hands-on experience helps interns build both technical and teamwork skills that are valuable for a future career in the field.
What are the most commonly searched types of Python Mechanical Engineering jobs in Oregon? The most popular types of Python Mechanical Engineering jobs in Oregon are:
What are popular job titles related to Internship Python Mechanical Engineering jobs in Oregon? For Internship Python Mechanical Engineering jobs in Oregon, the most frequently searched job titles are:
What cities in Oregon are hiring for Internship Python Mechanical Engineering jobs? Cities in Oregon with the most Internship Python Mechanical Engineering job openings:

Fluid Dynamicist

Panthalassa

Portland, OR โ€ข On-site

$18.25 - $22/hr

Full-time

Medical, Dental, Vision, Retirement, PTO

Re-posted 7 days ago


Job description

About the Company
We are a renewable energy and ocean technology company committed to rapidly developing and deploying technologies that will ensure a sustainable future for Earth by unlocking the vast energy potential of its oceans. Our focus is on capturing civilizational levels of ultra-low-cost renewable energy for applications including computing and affordable renewable fuels delivered to shore.
The company is a public benefit corporation headquartered in Portland, Oregon, and backed by leading venture capitalists, philanthropic investors, university endowments, and private investment offices. We value rigorous technical debate, fast iteration, strong ownership, and cross-disciplinary collaboration.
About the Job
As a Fluid Dynamicist you will help develop, validate, and apply the fast-running physics-based tools that drive Panthalassa's design, optimization, and fleet deployment decisions. You will work with our Principal Fluid Dynamicist and collaborate closely with computational fluid dynamics (CFD), controls, optimization, mechanical engineering, metocean, and fleet performance teams.
This role focuses on reduced-order and mid-fidelity marine hydrodynamics tools, including boundary element method (BEM) models, fleet deployment simulators, OrcaFlex models, metocean-driven performance analyses, and external-function links to our time-domain device simulators. You will write production-quality engineering code, run analyses, process results, communicate findings, debug model behavior, and identify opportunities to improve our fast-running simulation stack.
The ideal candidate has strong fundamentals in marine hydrodynamics, understands BEM concepts, is highly capable in Python, and can move fluidly between theory, code, simulation results, and engineering decisions. This person will independently own major modeling and simulation workstreams.
Responsibilities
  • Develop, maintain, validate, and apply fast-running hydrodynamics models used for design, optimization, controls, and fleet deployment analysis.
  • Work with boundary element method models, reduced-order hydrodynamic models, fleet deployment simulators, and OrcaFlex models.
  • Develop Python engineering tools to interface with modeling codes written in Julia and Python.
  • Build and maintain external-function links, data interfaces, and workflow glue between hydrodynamics models, simulation tools, optimization pipelines, and analysis scripts.
  • Run analyses using metocean reanalysis data, measured ocean data, sea-state statistics, wave spectra, current profiles, and other environmental inputs.
  • Process, visualize, and interpret simulation results to evaluate power, propulsion, structural loading, motion, operability, survivability, and other performance metrics.
  • Compare fast-running model outputs against CFD, experimental data, sea-trial data, OrcaFlex results, and higher-fidelity simulations.
  • Identify and debug issues in hydrodynamic models, simulation workflows, input datasets, post-processing scripts, and coupled simulation interfaces.
  • Collaborate within the CFD team to understand where high-fidelity results can improve reduced-order models and where reduced-order tools can guide CFD validation priorities.
  • Collaborate with optimization and controls teams to ensure that fast-running tools are accurate, robust, and useful for design-space exploration and operational decision-making.
  • Develop new analysis methods and identify additional uses for fast-running simulation tools across the company.
  • Write clear documentation, technical notes, plots, and presentations that communicate methods, assumptions, results, limitations, and recommendations.
  • Use modern software and AI-assisted development tools effectively to accelerate coding, debugging, analysis, and documentation while maintaining strong engineering judgment and code review discipline.

Required Qualifications
  • Legal authorization to work in the United States.
  • Bachelor's degree in Ocean Engineering, Naval Architecture, Mechanical Engineering, Aerospace Engineering, Physics, Applied Mathematics, or a similar field.
  • Strong foundation in fluid mechanics, marine hydrodynamics, waves, rigid body dynamics, and physics-based modeling.
  • Strong proficiency in Python for scientific computing, engineering analysis, data processing, and tool development.
  • Understanding of boundary element method concepts and their application to marine hydrodynamics.
  • Ability to run simulations, process results, identify anomalies, debug issues, and communicate findings clearly.
  • Experience with numerical modeling, reduced-order modeling, simulation tool development, or scientific software development.
  • Working knowledge of Linux environments, Git-based workflows, and engineering software development practices.
  • Ability to collaborate with CFD, controls, mechanical, software, metocean, and test teams to resolve modeling and simulation issues.
  • Strong written and verbal communication skills.
  • Strong first-principles engineering judgment and the ability to understand model assumptions, limitations, and appropriate use cases.

Preferred Qualifications
  • Master's or PhD in Ocean Engineering, Naval Architecture, Mechanical Engineering, Aerospace Engineering, Physics, Applied Mathematics, or a similar field.
  • Experience with frequency-domain and/or time-domain BEM methods.
  • Experience with OrcaFlex, WAMIT, Capytaine, Nemoh, AQWA, or similar hydrodynamic modeling tools.
  • Experience linking external functions, plugins, or custom models into larger simulation environments.
  • Experience with Julia, especially for scientific computing or simulation.
  • Experience with device-state simulation, time-domain simulation, controls simulation, or optimization workflows.
  • Experience interpreting, validating, or collaborating around CFD simulation results.
  • Experience with metocean reanalysis datasets, measured ocean data, wave spectra, environmental contours, or fleet deployment simulations.
  • Experience validating reduced-order models against CFD, wave basin data, tow tank data, sea-trial data, or field measurements.
  • Experience with data visualization, dashboarding, automated reports, or performance-monitoring tools.
  • Experience with software engineering practices for scientific code, including testing, documentation, version control, packaging, and code review.
  • Experience with marine energy systems, offshore structures, floating bodies, propulsion, mooring systems, or autonomous marine systems.
  • Experience in startup environments or fast-paced R&D teams; comfortable with ambiguity, proactive in shaping work, and adaptable to change.

The above qualifications are desired, not required. We encourage you to apply if you are a strong candidate with only some of the desired skills and experience listed.
Additional Requirements
  • Occasional extended hours or weekend work to support key milestones, sea trials, fleet operations, or urgent design decisions.
  • Strong preference for candidates based in Portland, Oregon. Exceptional remote candidates will be considered, with regular travel to Portland expected.
  • The above qualifications are desired, not required. We encourage you to apply if you are a strong candidate with only some of the desired skills and experience listed.

Compensation and Benefits
If hired for this full-time role, you will receive:
  • Cash compensation of $115,000-$175,000.
  • Equity in the company. We're all owners and if we're successful, this equity should be far and away the most valuable component of your compensation.
  • A benefits package that helps you take care of yourself and your family, including:
    • Flexible paid time off
    • Health insurance (the company pays 100% of gold level PPO plan for full time employees, their partners, and dependents)
    • Dental insurance (the company pays 100% for full time employees and 100% for their partners and dependents)
    • Vision insurance (the company pays 100% for full time employees, their partners, and dependents)
    • Disability insurance (the company pays 100% for a policy to provide long term financial support if you become disabled)
    • Ability to contribute to tax-advantaged accounts, including 401(k), health FSA, and dependent care FSA
  • Relocation assistance to facilitate your move to Portland (if needed).

Location
Our offices, lab and shop, are located in Portland, Oregon.