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@article{203113,
author = {Mr. Tushar Vijayrao Hadap and Prof. Pallavi Bhende},
title = {An Efficient Real-Time Computational Framework for Structural Analysis Using the Finite Element Method},
journal = {International Journal of Innovative Research in Technology},
year = {2026},
volume = {12},
number = {12},
pages = {10953-10957},
issn = {2349-6002},
url = {https://ijirt.org/article?manuscript=203113},
abstract = {The Finite Element Method (FEM) is one of the most widely used numerical techniques for structural analysis in civil, mechanical, aerospace, and industrial engineering. However, conventional FEM-based structural analysis often requires high computational resources and longer processing times, especially for large-scale and complex structures. Real-time analysis has therefore become an important research area for applications such as structural health monitoring, earthquake analysis, smart manufacturing, robotics, and digital twin systems. This research paper presents an efficient real-time computational framework for structural analysis using FEM. The proposed framework integrates optimized mesh generation, parallel processing, matrix reduction techniques, adaptive time-stepping, and GPU-based acceleration to reduce computational time while maintaining acceptable accuracy. The framework also incorporates modular solver architecture and dynamic load balancing for efficient execution. Experimental evaluation demonstrates significant improvement in processing speed and memory utilization compared with traditional FEM approaches. The proposed framework can support real-time simulations for complex engineering applications while achieving high computational efficiency and reliable structural performance prediction.},
keywords = {Finite Element Method, Structural Analysis, Real-Time Simulation, Computational Framework, Parallel Computing, GPU Acceleration, Numerical Methods, High Performance Computing, Structural Engineering.},
month = {May},
}
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