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Remote International Structural Engineer Jobs in Wichita, KS

Static Stress Engineer (Contract)

Wichita, KS · On-site +1

$52.50 - $72/hr

Assignments include structural sizing/documentation and subsequent certification documents for in ... Up to 5% Domestic and International Travel involved * Authorized to work in the US without current ...

Design - Stress - MRB Engineer

Wichita, KS · On-site +1

$52.50 - $72/hr

Structural design or analysis. * Broad range of standard hand and computer methods. (e.g. ISAMI ... Onsite or remote: Onsite 90% * Vision: able to see and read computer screens and other electronic ...

Manager - National Tax Office

Wichita, KS · Remote

$99K - $130K/yr

Support internal reorganizations and structural planning initiatives. * Collaborate with cross ... Background in M&A, international tax, and/or ag industry experience is a plus * Technical Skills

Remote International Structural Engineer information

See Wichita, KS salary details

$44.7K

$88.9K

$136K

How much do remote international structural engineer jobs pay per year?

As of Sep 6, 2026, the average yearly pay for remote international structural engineer in Wichita, KS is $88,924.00, according to ZipRecruiter salary data. Most workers in this role earn between $71,600.00 and $101,100.00 per year, depending on experience, location, and employer.

What is a remote international structural engineer?

A remote international structural engineer is a professional who designs, analyzes, and oversees the construction of structures such as buildings and bridges while working from a location outside the project's country. They use digital tools and communication platforms to collaborate with global teams, ensuring that projects meet both local and international engineering standards. This role requires a strong understanding of various building codes, excellent communication skills, and the ability to adapt to different cultural and regulatory environments. Remote international structural engineers are increasingly in demand as companies seek to leverage global talent and manage projects across borders.

How does a remote international structural engineer effectively collaborate with global project teams across different time zones?

Remote International Structural Engineers regularly coordinate with colleagues, clients, and contractors located in various countries, often requiring flexible working hours to accommodate different time zones. Efficient collaboration is achieved through the use of digital project management tools, video conferencing platforms, and clear documentation practices. Proactive communication and cultural awareness are essential to ensure all stakeholders are aligned on project deliverables and timelines. Adapting to these dynamics can be challenging but also offers valuable exposure to diverse engineering practices and enhances professional growth.

What are the key skills and qualifications needed to thrive as a remote international structural engineer?

To thrive as a Remote International Structural Engineer, you need a strong background in structural engineering principles, a relevant engineering degree, and often a Professional Engineer (PE) license or international equivalent. Familiarity with structural analysis software (such as SAP2000, ETABS, or STAAD.Pro), CAD tools, and international building codes is typically required. Excellent communication, cross-cultural collaboration, and time management skills help you succeed in a remote and global work environment. These competencies ensure the engineer can deliver safe, compliant, and efficient structural solutions across diverse projects and international standards.

What is the difference between Remote International Structural Engineer vs Remote Domestic Structural Engineer?

AspectRemote International Structural EngineerRemote Domestic Structural Engineer
CredentialsEngineering degree, PE/SE license, international certificationsEngineering degree, PE/SE license, local certifications
Work EnvironmentCollaborates with international teams, handles global projectsWorks primarily within domestic projects and teams
Employer & Industry UsageGlobal engineering firms, multinational companiesLocal engineering firms, regional projects
Search & Comparison IntentUnderstanding international project requirements, remote work optionsLocal project specifics, regional regulations

The main difference between a Remote International Structural Engineer and a Remote Domestic Structural Engineer lies in their project scope and certifications. International engineers work on global projects, often requiring international credentials and collaboration across borders. Domestic engineers focus on local projects within specific regions, with certifications aligned to local standards. Both roles involve remote work but serve different geographic markets and project types.

What are the most commonly searched types of International Structural Engineer jobs in Wichita, KS?

The most popular types of International Structural Engineer jobs in Wichita, KS are:

What are popular job titles related to Remote International Structural Engineer jobs in Wichita, KS?

For Remote International Structural Engineer jobs in Wichita, KS, the most frequently searched job titles are:

What job categories do people searching Remote International Structural Engineer jobs in Wichita, KS look for?

The top searched job categories for Remote International Structural Engineer jobs in Wichita, KS are:

What cities near Wichita, KS are hiring for Remote International Structural Engineer jobs?

Cities near Wichita, KS with the most Remote International Structural Engineer job openings:

Structural Engineer - Stress, Design, Systems Engineer

SOGECLAIR

Wichita, KS • On-site, Remote

Full-time

Posted 3 days ago

New


Job description

We are seeking experienced Structural Stress Engineers, Structural Design Engineers, and Systems Engineers to support advanced aerospace programs. Multiple opportunities are available across these engineering disciplines. Candidates do not need experience in all three areas; we are seeking engineers with strong expertise within their respective discipline.

The ideal candidates will bring hands-on aerospace experience supporting aircraft structures and/or systems, with experience working with metallic materials, composite materials, or both. Primary aircraft structure experience is strongly preferred.

Opportunities are available onsite in Wichita, Kansas and Falcon Hill, Utah, as well as remote positions depending on the specific program and engineering discipline.

Structural Design Engineering

Structural Design Engineers will support the development, modification, and integration of aircraft structural components and assemblies.

       Design and develop aircraft structural components, assemblies, and installations.

       Support metallic and composite aircraft structures, with primary structure experience preferred.

       Develop and modify 3D models, assemblies, and engineering drawings.

       Evaluate structural designs for manufacturability, installation, maintainability, and integration.

       Support design changes, modifications, repairs, and engineering investigations.

       Collaborate with Stress, Systems, Manufacturing, and other engineering organizations.

       Utilize CATIA V5 and SolidWorks in support of design activities.

Structural Stress Engineering

Structural Stress Engineers will perform analysis and substantiation of aircraft structures supporting new designs, modifications, repairs, and program requirements.

       Perform structural analysis of metallic and composite aircraft structures.

       Evaluate primary structural components and assemblies.

       Perform static strength, fatigue, durability, and damage-tolerance analysis as applicable.

       Support structural sizing, design optimization, modifications, and repairs.

       Develop engineering calculations, reports, and structural substantiation documentation.

       Perform finite element analysis using ANSYS and/or Abaqus.

       Collaborate closely with Structural Design Engineers to develop practical and structurally sound solutions.

Systems Engineering

Systems Engineers will support the development, integration, and verification of complex aircraft systems and their interfaces.

       Support aircraft systems development, integration, installation, and verification.

       Develop and manage system-level requirements and interfaces.

       Evaluate system architecture and integration requirements.

       Coordinate engineering activities across structural, electrical, mechanical, avionics, and other technical disciplines.

       Support system-level design reviews, technical investigations, and engineering changes.

       Identify and resolve interface and integration issues.

       Develop engineering documentation supporting system design, integration, and verification.

Requirements

       U.S. Citizenship is required.

       Bachelor's degree in Aerospace Engineering, Mechanical Engineering, Electrical Engineering, or a related engineering discipline preferred.

       Previous aerospace or defense engineering experience.

       Expertise in Structural Stress, Structural Design, or Systems Engineering.

       Experience supporting programs involving metallic structures, composite structures, or both.

       Primary aircraft structure experience is strongly preferred for Structural Stress and Structural Design positions.

       Experience with CATIA V5 and SolidWorks.

       Structural Stress candidates should have experience with ANSYS and/or Abaqus.

       Strong analytical, problem-solving, and technical communication skills.

       Ability to collaborate effectively within multidisciplinary engineering teams.

Benefits

These positions provide an opportunity to apply your aerospace engineering expertise to technically challenging programs involving advanced aircraft structures and systems. Whether your specialty is Structural Stress, Structural Design, or Systems Engineering, we are interested in engineers who bring strong technical experience, practical problem-solving skills, and an understanding of real-world aerospace design and development.