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Projects

Low-Cost Geohazard Monitoring System

Low-Cost Geohazard Monitoring System

2024

Developing low-cost accelerometers and inclinometers for earthquake and landslide early warning systems in Bangladesh. The BUET Low Cost Accelerometer (BLCA) has been successfully deployed across multiple districts.

Role: Researcher & Developer

Status:In Progress

Technologies:

C++PythonMicrosoft AzureEmbedded SystemsIoT

Highlights:

  • BUET Low Cost Accelerometer (BLCA) verified with shake table test

  • Deployed 6 BLCA across 4 districts in Bangladesh

  • Recorded first earthquake (31 July 2025) with BLCA at CUET

  • Designed embedded systems using C/C++ and Python

  • Implemented cloud (MS Azure) architecture for data management

  • Establishing foundations for a community seismic network

Beam Analysis Tool

Beam Analysis Tool

2025

Cross-platform desktop application for generating Shear Force and Bending Moment Diagrams for simply supported beam analysis.

Role:

Status:Completed

Technologies:

PythonQt FrameworkStructural Modeling

Highlights:

  • Developed a cross-platform desktop application using the Qt framework

  • Implemented singularity functions for beam analysis

  • Generates SFD and BMD diagrams

  • User-friendly interface for structural engineers

  • Accurate engineering calculations and visualizations

  • Published as open source

Interaction Diagrams Web Application

Interaction Diagrams Web Application

2023

Web-based tool for generating interaction diagrams for column structures, implemented with modern web technologies.

Role: Full-stack Developer

Status:Completed

Technologies:

JavaScriptReactNext.jsStructural ModelingStructural AnalysisWeb Technologies

Highlights:

  • Interactive web application for structural analysis

  • Calculation and visualization of interaction diagrams

  • Generates interaction diagrams for both uniaxial and biaxial bending

  • Modern React-based user interface

H/V Method in Seismic Microzonation

H/V Method in Seismic Microzonation

2023

Undergraduate thesis research on Horizontal to Vertical Spectral Ratio method for assessing site effects on earthquake ground motion. Conducted field surveys and data analysis.

Role: Research Student

Status:Completed

Technologies:

HVSR MethodPythonData AnalysisGeophysics

Highlights:

  • Conducted field surveys collecting microtremor data

  • Analyzed site amplification effects using Python

  • Implemented H/V spectral ratio calculations

  • Presented findings in undergraduate thesis