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Shell Tube Heat Exchanger Design Jobs (NOW HIRING)

Ohmstede Ltd is seeking a candidate to perform thermal and mechanical analysis to determine requirements for design and fabrication of new shell and tube heat exchangers or for the repair/rebuild ...

Job Summary Ohmstede Ltd is seeking a candidate to perform thermal and mechanical analysis to determine requirements for design and fabrication of new shell and tube heat exchangers or for the repair ...

Job Summary Ohmstede Ltd is seeking a candidate to perform thermal and mechanical analysis to determine requirements for design and fabrication of new shell and tube heat exchangers or for the repair ...

You'll span the full range-from specifying and technically managing third-party shell-and-tube coolers and air coolers, to leading in-house detailed design of advanced compact heat exchangers in high ...

Sr. Heat Exchanger Engineer

El Segundo, CA

$111K - $152K/yr

You'll span the full range--from specifying and technically managing third-party shell-and-tube coolers and air coolers, to leading in-house detailed design of advanced compact heat exchangers in ...

Sr. Heat Exchanger Engineer

El Segundo, CA ยท On-site

$111K - $152K/yr

You'll span the full range-from specifying and technically managing third-party shell-and-tube coolers and air coolers, to leading in-house detailed design of advanced compact heat exchangers in high ...

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Estimating Engineer- Shell & Tube Heat Exchangers Company Overview: We are a specialized ... Analyze design alternatives and suggest cost-effective solutions while maintaining quality and ...

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Shell Tube Heat Exchanger Design information

See salary details

$57K

$94.3K

$116.5K

How much do shell tube heat exchanger design jobs pay per year?

As of Jun 22, 2026, the average yearly pay for shell tube heat exchanger design in the United States is $94,322.00, according to ZipRecruiter salary data. Most workers in this role earn between $83,500.00 and $107,500.00 per year, depending on experience, location, and employer.

What is the difference between Shell Tube Heat Exchanger Design vs Mechanical Engineer?

AspectShell Tube Heat Exchanger DesignMechanical Engineer
Primary FocusDesign and optimization of heat exchangersDesign, analysis, and maintenance of mechanical systems
Work EnvironmentIndustrial plants, manufacturing facilities, engineering officesFactories, construction sites, engineering firms
CredentialsMechanical engineering degree, heat transfer certificationsMechanical engineering degree, professional engineering license
Industry UsageOil & gas, chemical, power generationManufacturing, automotive, aerospace

While both roles require a mechanical engineering background, Shell Tube Heat Exchanger Design specialists focus specifically on designing efficient heat exchange systems, whereas Mechanical Engineers have a broader scope including various mechanical systems and maintenance. Understanding these differences helps in selecting the right professional for your project needs.

What is a shell and tube heat exchanger?

A shell and tube heat exchanger is a type of heat exchanger that consists of a series of tubes, one set carrying a hot fluid and the other a cold fluid, allowing heat transfer between the two fluids without mixing them. The tubes are enclosed within a larger cylindrical shell, and the design allows for efficient heat exchange by maximizing surface area. This type of heat exchanger is commonly used in industries such as power generation, chemical processing, and oil refining due to its effectiveness and versatility. Proper design takes into account factors like fluid flow rates, temperature differences, pressure, and materials to ensure optimal performance and reliability.

What are the key skills and qualifications needed to thrive as a Shell Tube Heat Exchanger Designer, and why are they important?

To excel as a Shell Tube Heat Exchanger Designer, you need a strong background in mechanical or chemical engineering, with expertise in heat transfer, thermodynamics, and fluid mechanics. Familiarity with industry codes (like ASME), design software (such as HTRI, Aspen Exchanger Design & Rating), and drafting tools (AutoCAD, SolidWorks) is typically required. Attention to detail, problem-solving skills, and effective communication are crucial for translating complex requirements into viable engineering solutions. These competencies ensure safe, efficient, and cost-effective exchanger designs that meet client and regulatory standards.

What are some common challenges faced when designing shell and tube heat exchangers, and how can new designers effectively address them?

One of the main challenges in shell and tube heat exchanger design is balancing thermal performance with mechanical constraints, such as pressure drop and material compatibility. New designers often need to optimize tube layouts, baffle spacing, and flow rates to achieve efficient heat transfer while preventing issues like vibration or fouling. Collaborating closely with process engineers and fabrication teams can help ensure the design meets operational requirements and is feasible to manufacture. Continuous learning about industry standards (like TEMA and ASME codes) and using simulation software can also help new designers overcome these challenges.
Infographic showing various Shell Tube Heat Exchanger Design job openings in the United States as of June 2026, with employment types broken down into 50% Full Time, and 50% Nights. Highlights an 100% In-person job distribution, with an average salary of $94,322 per year, or $45.3 per hour.
Mechanical Design Engineer - Pressure Vessels

Mechanical Design Engineer - Pressure Vessels

The Ottohahn Group

Lynchburg, VA โ€ข On-site

$73K - $100K/yr

Other

Posted 21 days ago


Job description

The Ottohahn Group is working with a premier worldwide manufacturer and specialty fabricator of nuclear components to find Mechanical Engineers and Project Engineers to join their growing team!

Summary:

The Engineer / Project Engineer works closely with the Director of Engineering to manage customer order requests for the design and fabrication of heat exchangers and/or related HVAC systems and components utilizing ASME Boiler & Pressure Vessel Code requirements.

Responsibilities:

  • Creation of customer requirements, initial design drawings, calculations, and BOMโ€™s
  • Coordinate customer drawing and specification approvals
  • Monitor components through manufacturing & production process
  • Coordination of required quality inspections
  • Serve as the main point of contact for internal and external stakeholders
  • Create Design Reports with minimal supervision for several product lines
  • Perform thermal calculations for a variety of coil designs and configurations
  • Perform design validation calculations according to ASME Code requirements
  • Use judgement and initiative in developing solutions to problems, interpreting general policies, and determining work assignments
  • Maintain up-to-date project and sales order tracking systems
  • Coordinate resources to provide timely support to QA and the Shop Floor on demand
  • Provide technical expertise, guidance and support to Sales and customers
  • Manage welding/brazing activities including procedures, approvals and certifications

Experience / Knowledge with:

  • ASME Boiler & Pressure Vessel Code for Section VIII, Section IX, Section I, Section III, Subsection NB, NC, ND, NF, and TEMA
  • Manufacturing, machining, & fabrication processes
  • Seismic and nozzle loading
  • Strength of materials
  • Solidworks & EPDM
  • Shell & Tube heat exchanger design (specifically evaporators / condensers)

Requirements:

  • B.S. in Mechanical Engineering or related engineering field
  • 5+ years of Mechanical Engineering experience
  • Positions are direct hire on-site in Lynchburg, VA
  • Must be a U.S Citizen or Permanent resident