Structural engineer · Research software developer

Computational mechanics.
Resilient structures.

I build research software and data-driven mechanics methods that make structural simulation faster, more reliable, and easier to translate into resilient infrastructure.

Research & publications

What I researched, built, and learned.

These projects connect published methods to practical tools for structural simulation, optimization, and resilient infrastructure.

PUBLISHED · 2026

CMA-MAPPO for sparse-reward exploration

Research: I investigated how covariance-matrix adaptation can improve exploration when multiple agents receive limited or delayed feedback.

My contribution: I integrated CMA-ES with multi-agent PPO, designed the training workflow, and evaluated convergence and cumulative reward against baseline algorithms.

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PUBLISHED · 2025

PyAdMesh adaptive finite elements

Research: I studied how error-driven h-adaptive meshing and inter-mesh transfer can focus computation where a structural solution needs it most.

My contribution: I developed the open-source implementation and GPU/CPU acceleration workflow, reporting speed-ups of up to 30× on GPU and 8× on CPU.

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PUBLISHED · 2025

Two-dimensional adaptive FEM using GPGPU

Research: My master’s research explored accelerating two-dimensional adaptive finite-element analysis with general-purpose GPU computing.

My contribution: I formulated the adaptive workflow, implemented the parallel computation, and evaluated accuracy and runtime for engineering analysis.

Read the PyAdMesh case study →
ACTIVE DIRECTIONS

Structural health, dynamics, and control

I am extending this work toward physics-informed model updating from sparse frequency-response measurements, seismic performance of resilient systems, and hierarchical active damping.

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Projects & research software

Tools you can inspect and run.

I publish implementation details, benchmarks, and reproducible code so the engineering community can build on the work.

WEB ENGINEERING · DJANGO / MYSQL

Project Manager Dashboard

A production-oriented system for role-based approvals, project monitoring, and financial tracking.

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Profile snapshot

The person behind the work.

Engineering practice, academic training, and an open-source mindset shape how I approach every research problem.

EXPERIENCE

Structural engineer

At the Iranian Red Crescent Society, I review structural designs, coordinate compliance, and build internal tools for project monitoring.

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EDUCATION

M.Sc. Structural Engineering

My thesis at Khajeh Nasir Toosi University of Technology focused on two-dimensional adaptive finite-element analysis using GPGPU computing.

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RESEARCH PROFILE

Computational mechanics with purpose

I connect structural engineering practice with reproducible software and data-driven methods—turning demanding simulation problems into tools, evidence, and research others can build on.

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PythonCUDACuPyNumbaPyTorchOpenSeesPyAbaqusStructural dynamicsSeismic resilience
Why this is a fundable PhD profile

A clear line from preparation to research impact.

My application combines demonstrated research output, engineering context, and software that makes the work testable by a research group.

01

Evidence of independence

Three journal publications, first-author work, and open repositories show that I can take a technical idea from formulation to evaluation.

02

Immediate lab contribution

Python, GPU computing, PyTorch, OpenSeesPy, and adaptive FEM experience let me contribute to computational projects from the first semester.

03

A focused next question

I want to connect adaptive simulation and physics-informed learning to structural health monitoring, seismic resilience, and active control.

Evidence, not just claims

A research trail you can inspect.

Every headline connects to a paper, thesis, repository, or documented engineering role.

PhD opportunities · Australia

Let’s test the research fit.

I am seeking a fully funded PhD in Australia where adaptive finite elements, high-performance computing, and scientific machine learning can advance safer, more resilient structures.

01 Computational mechanics02 Structural health monitoring03 Seismic resilience & control