
Developed foundational aerodynamic and structural analysis modules for the sofia-ys/Aircraft-Design repository, focusing on early-stage wing design and structural integrity. Leveraging Python and numerical analysis, implemented aerodynamic calculations for clean-wing configurations and established a framework for wing box inertia and bending stress analysis. The work included modular Python scripting for lift curve slope, stall angle, and comprehensive Ixx and Ixz inertia computations, as well as scaffolding for bending stress prediction. Emphasized maintainability through code refactoring, constants management, and removal of obsolete files, resulting in a cleaner codebase that supports faster design iterations and more accurate structural assessments in aerospace engineering.
December 2024 monthly achievements focused on delivering foundational wing structural analysis capabilities in the Aircraft-Design repo, including inertia (Ixz) with the I7 term and a bending stress analysis module. These features support more accurate stiffness and stress predictions, enabling faster design iterations and better risk management. Major bugs fixed: None reported. Overall impact: Enhanced wing structural analysis capabilities, enabling more accurate inertia and bending stress predictions, accelerating design iterations and reducing risk. Technologies/skills demonstrated: Python module development, modular architecture, disciplined commit history.
December 2024 monthly achievements focused on delivering foundational wing structural analysis capabilities in the Aircraft-Design repo, including inertia (Ixz) with the I7 term and a bending stress analysis module. These features support more accurate stiffness and stress predictions, enabling faster design iterations and better risk management. Major bugs fixed: None reported. Overall impact: Enhanced wing structural analysis capabilities, enabling more accurate inertia and bending stress predictions, accelerating design iterations and reducing risk. Technologies/skills demonstrated: Python module development, modular architecture, disciplined commit history.
November 2024 monthly summary for sofia-ys/Aircraft-Design: Delivered foundational aerodynamic and structural analysis capabilities for wing design. Implemented a Python-based aerodynamic calculations script for clean-wing configurations and established Wing Box/Ixx structural calculation framework with constants, centroids, and refinements. Focused on code quality and maintainability through constants.py and Ixx.py updates, and reduced technical debt by removing obsolete files.
November 2024 monthly summary for sofia-ys/Aircraft-Design: Delivered foundational aerodynamic and structural analysis capabilities for wing design. Implemented a Python-based aerodynamic calculations script for clean-wing configurations and established Wing Box/Ixx structural calculation framework with constants, centroids, and refinements. Focused on code quality and maintainability through constants.py and Ixx.py updates, and reduced technical debt by removing obsolete files.

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