Justin Goosse
Papers
2
Total Citations
39
H-Index
2
About
Justin Goosse is a rising researcher at the intersection of architectural design, digital fabrication, and structural timber engineering. His work focuses on developing computational and robotic methods to create innovative, sustainable timber structures. Goosse’s most-cited paper, “Parametric design and robotic fabrication of whole timber reciprocal structures” (2022, 36 citations), introduces a novel approach to designing and fabricating complex reciprocal timber frames using parametric modeling and robotic assembly. This contribution demonstrates how digital tools can enable efficient, material-saving construction with natural resources. His more recent work, “Opportunities and limitations of robotically-shaped subtractive fabrication structural timber connections for multi-level log frame buildings” (2025, 3 citations), explores the practical challenges and potential of robotic subtractive manufacturing for timber connections in multi-story buildings, advancing the feasibility of automated timber construction. Goosse’s research is notable for bridging computational design, robotic fabrication, and structural engineering, offering scalable solutions for sustainable architecture. His work is particularly relevant for students and researchers interested in digital fabrication, timber engineering, and the future of automated construction.
Research Focus
Key Achievements
Top Papers
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