
Leonardo Sigolo developed and refactored core aerodynamic modeling and data workflows for the PaSieg0/Ekranoplan-DSE repository, focusing on aircraft design calculations and center of gravity analysis. He implemented new modules for gust load and engine height calculations, modernized wing planform plotting, and enhanced fuselage cross-section modeling, all driven by structured JSON data. Using Python and object-oriented programming, Leonardo improved load distribution logic, integrated safety factors, and consolidated design data for accuracy and maintainability. His work included debugging, code documentation, and test infrastructure updates, resulting in more reliable mass and balance calculations and clearer data visualization for engineering decision-making.

June 2025 performance summary for PaSieg0/Ekranoplan-DSE: Completed major numerical refactors and data-model updates across CGCalculation, load distribution, and design data, delivering more accurate CG positioning, safer load handling, and clearer visualization for design decisions. Implemented a comprehensive CGCalculation core refactor with updated mass initialization and load distribution logic; corrected MTOW sign in wing load calculations; consolidated design3.json to remove redundant parameters and updated fuselage dimensions; introduced torsional loading calculations and load plotting; integrated CGCalculation with LandingLoads and revised design data with safety factors; added an end-condition marker to moment diagrams; improved test infrastructure.
June 2025 performance summary for PaSieg0/Ekranoplan-DSE: Completed major numerical refactors and data-model updates across CGCalculation, load distribution, and design data, delivering more accurate CG positioning, safer load handling, and clearer visualization for design decisions. Implemented a comprehensive CGCalculation core refactor with updated mass initialization and load distribution logic; corrected MTOW sign in wing load calculations; consolidated design3.json to remove redundant parameters and updated fuselage dimensions; introduced torsional loading calculations and load plotting; integrated CGCalculation with LandingLoads and revised design data with safety factors; added an end-condition marker to moment diagrams; improved test infrastructure.
May 2025: Delivered core aerodynamic modeling improvements and a more robust data workflow for PaSieg0/Ekranoplan-DSE, enabling data-driven design decisions and faster iteration cycles. Key features delivered span gust load calculations, engine height modeling, wing planform plotting, engine positioning, and fuselage CG modeling. Significant JSON data fixes improved parameter accuracy and configurability.
May 2025: Delivered core aerodynamic modeling improvements and a more robust data workflow for PaSieg0/Ekranoplan-DSE, enabling data-driven design decisions and faster iteration cycles. Key features delivered span gust load calculations, engine height modeling, wing planform plotting, engine positioning, and fuselage CG modeling. Significant JSON data fixes improved parameter accuracy and configurability.
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