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Remote Piping Stress Engineer Jobs in Decatur, GA

Mechanical Engineer

Atlanta, GA · On-site +1

$90K - $120K/yr

This opportunity is remote and/or hybrid-friendly that can be performed from a wide range of ... Prepare piping system layouts and designs to meet project requirements. * Conduct HVAC system ...

Financial Services Location: 100% Remote Contract: 90 Day Contract-to-Hire Rate: Up to $137k/year ... Skilled in load, stress, and soak testing methodologies. Strong communicator able to convert ...

Financial Services Location: 100% Remote Contract: 90 Day Contract-to-Hire Rate: Up to $65/hr Top 3 ... load, stress, soak) with tools like Artillery, K6, JMeter • Automation frameworks (Selenium ...

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Remote Piping Stress Engineer information

See Decatur, GA salary details

$81K

$135.3K

$257.3K

How much do remote piping stress engineer jobs pay per year?

As of Jun 7, 2026, the average yearly pay for remote piping stress engineer in Decatur, GA is $135,283.00, according to ZipRecruiter salary data. Most workers in this role earn between $100,600.00 and $157,200.00 per year, depending on experience, location, and employer.

How does a Remote Piping Stress Engineer typically collaborate with multidisciplinary teams across different locations?

As a Remote Piping Stress Engineer, you will frequently collaborate with piping designers, project managers, and structural engineers using digital communication tools such as video conferencing, cloud-based CAD platforms, and project management software. Regular coordination meetings and shared documents help ensure that stress analysis findings are integrated into design updates and construction plans. Effective communication and proactive documentation are essential, as team members may be in various time zones and locations, requiring flexibility and strong organizational skills.

What are the key skills and qualifications needed to thrive as a Remote Piping Stress Engineer, and why are they important?

To thrive as a Remote Piping Stress Engineer, you need a solid background in mechanical or civil engineering, expertise in piping design codes, and experience with stress analysis. Familiarity with technical tools like CAESAR II, AutoPIPE, and knowledge of relevant industry standards such as ASME B31.3 is typically required. Strong problem-solving abilities, attention to detail, and effective communication are essential soft skills for collaborating with remote teams and ensuring project accuracy. These skills and qualifications are critical for ensuring the safety, reliability, and compliance of piping systems in complex engineering projects.

What is the difference between Remote Piping Stress Engineer vs Piping Designer?

AspectRemote Piping Stress EngineerPiping Designer
CredentialsEngineering degree, PE license often preferredTechnical diploma or associate degree, CAD training
Work EnvironmentEngineering offices, project sites, remote optionsDesign offices, CAD workstations, remote possible
Industry UsageOil & gas, petrochemical, power plantsOil & gas, industrial plants, infrastructure

The Remote Piping Stress Engineer focuses on analyzing and ensuring the integrity of piping systems under various stresses, often requiring engineering certifications. In contrast, the Piping Designer primarily creates detailed piping layouts and drawings. While both roles may work remotely and within similar industries, their core responsibilities and required credentials differ significantly.

What are Remote Piping Stress Engineers?

Remote Piping Stress Engineers are specialized engineers who analyze and ensure the integrity and safety of piping systems, typically for industries like oil and gas, power plants, and chemical processing, while working from a remote location. They use advanced software to simulate stresses, loads, and thermal effects on pipework to identify potential failure points or risks. Their work helps ensure that pipelines meet industry standards and regulations, minimizing the risk of leaks or accidents. By working remotely, they can collaborate with teams worldwide, review digital models, and provide consulting or design recommendations without being physically present at the project site.
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What cities near Decatur, GA are hiring for Remote Piping Stress Engineer jobs? Cities near Decatur, GA with the most Remote Piping Stress Engineer job openings:
Mechanical Engineer- Turbine

Mechanical Engineer- Turbine

Quantum World Technologies Inc

Atlanta, GA • Remote

$77K - $105K/yr

Contractor

Posted 2 days ago


Job description

Job Title: Mechanical Design Engineer

Location: Houston, TX & Atlanta, GA (Remote)

Hire Type: Full-time

Job Summary:

  1. Create and develop detailed design & drawings for gas turbine components, including blades, casings, and combustors, using CAD software.
  2. Good Knowledge in power plant accessories, such as pumps, valves, heat exchangers, and piping systems
  3. Perform thermal and mechanical analysis, including stress, vibration, and fluid dynamics simulations to ensure designs meet performance and safety standards.
  4. Work closely with cross-functional teams, including manufacturing, quality assurance, and project management, to ensure designs are feasible and align with project timelines.
  5. Prepare technical documentation, including specifications, reports, and design change requests, ensuring compliance with industry standards and regulations.
  6. Identify and implement design improvements and optimization strategies to enhance efficiency, reliability, and cost-effectiveness of gas turbine systems.
  7. Diagnose and resolve design-related issues in existing products, collaborating with maintenance and operations teams.
  8. Stay updated on industry trends, new materials, and technologies related to gas turbines to inform future design initiatives.

Qualifications:

  • Bachelor’s degree in mechanical engineering or a related field; a master’s degree or specialized certification is a plus.
  • 5+years of experience in mechanical design, preferably in the aerospace or power generation sectors.
  • Proficiency in CAD software (e.g., SolidWorks, NX, CATIA, ANSYS) and experience with design simulation tools.
  • Strong analytical and problem-solving skills, with the ability to perform complex calculations and simulations.
  • Excellent verbal and written communication skills for effective collaboration with team members and stakeholders.
  • Familiarity with project management methodologies and tools can be beneficial.