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Custom tooling for exploring smooth shell geometry constrained by boundary and vertical load.

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Subterrain

Custom tooling and methodology for exploring structurally performant water tight shell geometries inside polygonal planar cell boundaries and under distributed vertical load using Grasshopper + Kangaroo.

Demo

Getting Started

Dependancies

Grasshopper definitions and python scrips requires the following rhino/gh plugins to work:

Tsplines
Kangaroo
Weaverbird
GhPython

How to use tool

Open sandbox.3dm, launch grasshopper and open sandbox.gh. Should have something like this:

Roadmap

Would like to develop this into fully integrated system for subterrainian architecture, that allows users to manipulate user/building constraints in real-time and outputs closed mesh massing for rapid prototyping, and perhaps generates complete set of shop drawings for fabrication :). If you are interested in helping please let me know.

Contributors

Joshua Parker - parkerjgit.github.io

See full list of contributors who participated in this project. Currently no contributors

Acknowledgments

Definitions and scripts developed in the context of a project with OPEN Architecture, currently under construction. Images copyright (c) 2016 OPEN Architecture.

Reference

  • Adriaenssens, S., Block, P., Veenendaal, D., & Williams, C. (2014). Shell structures for architecture: Form finding and optimization.

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Custom tooling for exploring smooth shell geometry constrained by boundary and vertical load.

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