Job Description

Rotating Equipment Design & Analysis Engineer

BUILD THE NEXT GENERATION OF IRANIAN ROTATING EQUIPMENT

Nahadin Arman is building a specialized engineering core focused on the design, analysis, development, and localization of rotating equipment technologies.

This is not a conventional engineering position.
We are not looking for someone who simply creates drawings, runs simulation software, or performs predefined calculations.
We are looking for an engineer who can understand the problem, build the right model, analyze it, design a solution, validate the results, and ultimately turn an engineering concept into a real product.

If you define engineering as:
Analysis + Simulation + Problem Solving + Design + Testing + Learning + Technology Creation
this opportunity may be for you.

Role Mission:
Your mission will be to contribute to building the engineering capability required to design and develop the next generation of Iranian rotating equipment.

The engineering cycle is:
Engineering Problem → Conceptual Design → Modeling → Analysis → Optimization → Manufacturing → Testing → Validation → Product Development
You will participate in the real engineering lifecycle—not just one isolated stage of it.

Core Areas of Responsibility:
Rotating Equipment Design & Development
Design and develop pumps, compressors, turbines, and other rotating equipment.
Perform conceptual and detailed mechanical design.
Optimize designs based on performance and operating requirements.
Contribute to material selection, manufacturing processes, and production requirements.
Evaluate design manufacturability and reliability.
Engineering Analysis & Simulation
Perform engineering analyses to evaluate equipment performance and behavior.
Conduct stress, deformation, fatigue, and life assessments.
Perform fluid-flow and thermal analyses.
Conduct rotor-dynamics and vibration analyses.
Identify design weaknesses and develop corrective engineering solutions.
Optimize designs based on simulation and analytical results.
Reverse Engineering & Product Development
Reverse-engineer existing equipment and components.
Analyze the architecture, design, and performance of reference equipment.
Identify opportunities for design improvement.
Contribute to technology localization and new product development.
Convert engineering knowledge and experience into manufacturable designs.
Manufacturing & Testing
Work closely with manufacturing, machining, and production teams.
Verify manufacturing results against design requirements.
Participate in engineering testing and validation activities.
Compare test results with analytical and simulation results.
Improve designs based on real-world test data.
Support technical problem solving during manufacturing and field operation.

Who Are We Looking For?
The right candidate is more than an engineering software user.

You should be able to connect:
Physics → Calculation → Modeling → Simulation → Design → Manufacturing → Testing → Real-World Performance.

You are someone who:
Defines the engineering problem before running an analysis.
Does not accept simulation results without understanding the underlying physics.
Uses analysis to make engineering decisions—not simply to produce reports.
Enjoys solving complex technical problems.
Looks for root causes rather than temporary fixes.
Understands the relationship between design, analysis, and manufacturability.
Continuously learns new technologies and engineering methods.
Takes ownership of engineering outcomes.
Shares knowledge and contributes to team development.
Thinks beyond “Can it be done?” and asks “How can we make it work?”

Key Competencies:
Engineering Thinking:
Ability to translate real industrial problems into analytical, modellable, and solvable engineering problems.

Analytical Thinking:
Ability to interpret data, simulation results, and system behavior and identify root causes.

Problem Solving:
Ability to develop engineering solutions for complex, multidisciplinary problems.

Systems Thinking:
Understanding the relationship between design, materials, manufacturing, performance, vibration, reliability, and operating conditions.

Engineering Accuracy:
Strong attention to assumptions, boundary conditions, input data, analysis methods, and result validation.

Technology Development Mindset:
Ability to continuously learn and turn new knowledge into practical engineering capability.

Technical Ownership:
Taking responsibility for engineering outcomes from problem definition through analysis, manufacturing, testing, and improvement.

Collaboration:
Ability to work effectively with design, analysis, manufacturing, testing, and field-engineering teams.

Requirements:
Bachelor's degree or higher in Mechanical Engineering, Aerospace Engineering, or Materials & Metallurgical Engineering.
Strong understanding of rotating equipment design and operating principles.
Experience with engineering analysis and simulation tools such as:
ANSYS
Abaqus
Fluent
CFX
STAR-CCM+
Siemens Simcenter
Experience or familiarity with 3D design tools such as:
SolidWorks
CATIA
Siemens NX
Creo
Familiarity with API and ASME standards is an advantage.
Willingness to undertake technical assignments and field visits.
Ability to read and analyze technical documentation.
Strong Advantages

Experience in any of the following areas will be highly valued:
Pump design
Compressor design
Turbine design
Rotating equipment design
Finite Element Analysis
Computational Fluid Dynamics
Rotor Dynamics
Vibration Analysis
Industrial equipment reverse engineering
Oil, Gas, Petrochemical, or Power industries
Direct collaboration with manufacturing and testing teams

Why This Role Is Different:
At Nahadin Arman, you will not simply design a component or run an analysis.
You will participate in the complete product-development cycle:
Conceptual Design

Modeling

Analysis

Optimization

Manufacturing

Testing

Validation

Improvement

Product Development

The objective is to build real engineering capability and turn engineering knowledge into industrial products.

What Success Looks Like:
Success is not measured by the number of drawings produced or simulation files completed.

It is measured by your ability to:
Understand a real industrial problem → Develop an engineering solution → Analyze and validate it → Manufacture it → Test real performance → Improve the design.

The Engineering Formula:
Engineering Thinking + Analysis + Simulation + Design + Manufacturing + Testing = Technology Creation

If You Are Looking for More Than a Job, If you want to be part of a team developing Iran's capability to design and manufacture advanced rotating equipment;
If you are interested not merely in using technology, but in creating and developing technology;
If solving complex engineering problems genuinely motivates you;
And if you want to see your engineering work move from a computer screen to a real product operating in industry

Nahadin Arman invites you to join our Rotating Equipment Design & Analysis Engineering Core.

Employment Type

  • Full Time

Details

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