Junior Structural & Loads Analysis Engineer
at Portal Space Systems · 11-50 employees
- Seniority
- Junior
- Location
- Bothell, WA
- Posted
- 5d ago
at Portal Space Systems · 11-50 employees
Portal Space Systems develops solar thermal propulsion systems for high-speed in-space maneuvering.
<div class="content-intro"><h3>About Portal</h3> <p>Portal Space Systems is on a mission to expand humanity’s freedom of movement in space. We’re building the spacecraft that makes that mission possible. From our Bothell, WA headquarters, we design vehicles with the maneuverability, resilience, and adaptability needed for the next era of orbital operations. Every system we build is in service of a simple idea: space should be more accessible, responsive, and capable. Joining Portal means stepping into a team that believes in bold engineering, fast iteration, and the power of small groups to change what’s possible. If you want your work to directly shape the future of in-space mobility, join us.</p></div><h1>Position Summary</h1> <p>The Junior Structural & Loads Analysis Engineer is an early-career role for a new graduate or engineer with up to two years of experience who wants to build spacecraft structures expertise through meaningful, hands-on work. Working closely with both the Structural Analysis Lead and the Loads & Dynamics Lead, this engineer will help develop finite element models, execute structural and dynamic analyses, support environmental testing, and turn results into decisions that directly affect flight hardware. The role offers broad exposure to the spacecraft development lifecycle, structured technical mentorship, and progressively greater ownership as capability grows.</p> <h1>What You Will Learn and Contribute</h1> <ul> <li>Build practical expertise in spacecraft structural analysis while working directly with experienced technical leads.</li> <li>See analyses progress from early sizing and design trades through detailed design, environmental testing, correlation, and flight readiness.</li> <li>Work with real spacecraft hardware, test data, multidisciplinary engineering teams, and configuration-controlled models.</li> <li>Take ownership of clearly defined analysis work packages and grow toward increasingly complex technical assignments.</li> <li>Develop both deep analytical skills and the judgment needed to become a trusted spacecraft structural analyst.</li> </ul> <h1>Responsibilities</h1> <ul> <li>Support the development, update, verification, and configuration control of spacecraft finite element models.</li> <li>Prepare geometry, meshes, material properties, joints, interfaces, boundary conditions, loads, and analysis input decks under the guidance of the approving technical lead.</li> <li>Execute assigned static, stress, deflection, modal, frequency-response, random-vibration, and other structural or dynamic analyses.</li> <li>Calculate structural margins of safety and help identify load paths, sensitivities, model limitations, and design drivers.</li> <li>Process, transform, check, and visualize loads and dynamics data from internal analyses, launch-vehicle providers, suppliers, and tests.</li> <li>Generate test predictions and support instrumentation planning for vibration, static-load, modal, and other structural test activities.</li> <li>Reduce environmental test data and create test-versus-analysis comparisons that support model correlation and verification.</li> <li>Support coupled-loads analysis, dynamic response analysis, structural trade studies, and anomaly investigations as experience grows.</li> <li>Develop Python or MATLAB scripts that automate repetitive analysis, data-processing, plotting, checking, and reporting tasks.</li> <li>Perform model and results quality checks and document assumptions, inputs, configurations, methods, results, and limitations.</li> <li>Prepare clear calculation notes, technical reports, review material, and verification evidence.</li> <li>Collaborate with mechanical design, systems, integration and test, propulsion, avionics, GNC, and other spacecraft disciplines.</li> <li>Maintain reproducible models, scripts, datasets, and results in accordance with program configuration-management practices.</li> </ul> <h1>Basic Qualifications</h1> <ul> <li>Bachelor’s degree in aerospace engineering, mechanical engineering, civil engineering, or a related technical discipline completed by the employment start date.</li> <li>Zero to two years of professional engineering experience; recent graduates are encouraged to apply.</li> </ul> <h1>Preferred Qualifications</h1> <ul> <li>Academic, internship, research, project-team, or professional experience with finite element analysis, structural mechanics, or structural dynamics.</li> <li>Understanding of fundamental engineering mechanics, including statics, dynamics, strength of materials, and vibration.</li> <li>Familiarity with at least one finite element analysis tool through coursework, research, an internship, a student project, or professional work.</li> <li>Ability to perform organized engineering calculations, evaluate whether results are physically reasonable, and communicate findings clearly.</li> <li>Curiosity, attention to detail, willingness to ask questions, and motivation to develop as a spacecraft structural analyst.</li> <li>Coursework or project experience in finite element methods, structural dynamics, vibrations, aerospace structures, composites, or mechanical testing.</li> <li>Familiarity with tools such as Nastran, Femap, Patran, ANSYS, Abaqus, HyperMesh, or comparable FEM software.</li> <li>Experience using Python or MATLAB for engineering calculations, data processing, plotting, or automation.</li> <li>Internship, research, laboratory, Formula SAE, rocketry, CubeSat, robotics, or other hands-on aerospace or mechanical project experience.</li> <li>Exposure to modal, sine-vibration, random-vibration, shock, static-load, or structural qualification testing.</li> <li>Familiarity with computer-aided design, engineering drawings, materials, fasteners, bonded joints, composites, or spacecraft structures.</li> <li>Experience documenting and presenting technical work to peers, faculty, customers, or engineering reviewers.</li> </ul> <h1>Role Structure and Growth</h1> <ul>