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Computational form-finding of single-layer spatial structures: Constructing force diagrams with Vector-based Graphic Statics and guiding trails
This article extends the Vector-based Graphic Statics (VGS) computational framework to design single-layer spatial (SLS) structures. It introduces a novel computational workflow that produces ordered and controllable vector-based force diagrams for real-time interactive design. Key advancements incl...
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Published in: | Automation in construction 2024-10, Vol.166, p.105519, Article 105519 |
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creator | Shen, Yuchi Jasienski, Jean-Philippe Ohlbrock, Patrick Ole D'Acunto, Pierluigi |
description | This article extends the Vector-based Graphic Statics (VGS) computational framework to design single-layer spatial (SLS) structures. It introduces a novel computational workflow that produces ordered and controllable vector-based force diagrams for real-time interactive design. Key advancements include an algorithm for identifying guiding trails within the form diagram's underlying graph to control its planarization, an augmented half-edge (AHE) data structure for seamless force diagram assembly, and an interface for generating force diagrams using the Combinatorial Equilibrium Modelling (CEM) method. These advancements are demonstrated through practical design cases using the enhanced VGS framework, aiming to improve collaboration between structural engineers and architects by providing a direct and visual link between form and forces.
•A novel method is proposed to generate controllable vector-based force diagrams for Single-layer Spatial (SLS) structures.•An algorithm is developed to generate guiding trails to control the planarization of the form diagram's underlying graph.•An augmented half-edge (AHE) data structure is developed for easy assembly of the force diagrams.•An interface is developed for constructing force diagrams using the Combinatorial Equilibrium Modelling (CEM) method.•Case studies demonstrate the enhancements brought by the updated vector-based graphic statics framework for designing. |
doi_str_mv | 10.1016/j.autcon.2024.105519 |
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•A novel method is proposed to generate controllable vector-based force diagrams for Single-layer Spatial (SLS) structures.•An algorithm is developed to generate guiding trails to control the planarization of the form diagram's underlying graph.•An augmented half-edge (AHE) data structure is developed for easy assembly of the force diagrams.•An interface is developed for constructing force diagrams using the Combinatorial Equilibrium Modelling (CEM) method.•Case studies demonstrate the enhancements brought by the updated vector-based graphic statics framework for designing.</description><subject>3D graphic statics</subject><subject>Force diagram</subject><subject>Form diagram</subject><subject>Graph theory</subject><subject>Load-path</subject><subject>Planar graph</subject><subject>Planarization</subject><subject>Single-layer spatial structures</subject><subject>Structural design</subject><subject>Vector-based graphic statics</subject><issn>0926-5805</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2024</creationdate><recordtype>article</recordtype><recordid>eNp9UEtOwzAQ9QIkSuEGLHyBFDuJY4cFEor4SZVY8NlaE9tpXSVxZDugnoIrkxDWrJ5m9D4zD6ErSjaU0OL6sIExKtdvUpLm04oxWp6gFSnTImGCsDN0HsKBEMJJUa7Qd-W6YYwQreuhxY3zXdLYXtt-h12Dw4StSVo4Go_DMNEmUoh-VHH0JtzgyvXLOAsmtTJYW9h56AL-snGPP4yKzic1BKPxo4dhbxV-nQNVwNBrvBvtb1r0YNtwgU4baIO5_MM1en-4f6ueku3L43N1t00UFSwmvKGEpwUH4MKILCOiFsDSosxoSpU2VGec5kApN3kuqICiZjWQjLKaM0JJtkb54qu8C8GbRg7eduCPkhI5FykPcilSzkXKpchJdrvIzHTbpzVeBmVNr4y2fnpUamf_N_gBtUmDAQ</recordid><startdate>202410</startdate><enddate>202410</enddate><creator>Shen, Yuchi</creator><creator>Jasienski, Jean-Philippe</creator><creator>Ohlbrock, Patrick Ole</creator><creator>D'Acunto, Pierluigi</creator><general>Elsevier B.V</general><scope>AAYXX</scope><scope>CITATION</scope></search><sort><creationdate>202410</creationdate><title>Computational form-finding of single-layer spatial structures: Constructing force diagrams with Vector-based Graphic Statics and guiding trails</title><author>Shen, Yuchi ; Jasienski, Jean-Philippe ; Ohlbrock, Patrick Ole ; D'Acunto, Pierluigi</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c185t-7f107267aa78e83308b8a52693121cde1d3714a117e44818a6b5ba0315b750103</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2024</creationdate><topic>3D graphic statics</topic><topic>Force diagram</topic><topic>Form diagram</topic><topic>Graph theory</topic><topic>Load-path</topic><topic>Planar graph</topic><topic>Planarization</topic><topic>Single-layer spatial structures</topic><topic>Structural design</topic><topic>Vector-based graphic statics</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Shen, Yuchi</creatorcontrib><creatorcontrib>Jasienski, Jean-Philippe</creatorcontrib><creatorcontrib>Ohlbrock, Patrick Ole</creatorcontrib><creatorcontrib>D'Acunto, Pierluigi</creatorcontrib><collection>CrossRef</collection><jtitle>Automation in construction</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Shen, Yuchi</au><au>Jasienski, Jean-Philippe</au><au>Ohlbrock, Patrick Ole</au><au>D'Acunto, Pierluigi</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Computational form-finding of single-layer spatial structures: Constructing force diagrams with Vector-based Graphic Statics and guiding trails</atitle><jtitle>Automation in construction</jtitle><date>2024-10</date><risdate>2024</risdate><volume>166</volume><spage>105519</spage><pages>105519-</pages><artnum>105519</artnum><issn>0926-5805</issn><abstract>This article extends the Vector-based Graphic Statics (VGS) computational framework to design single-layer spatial (SLS) structures. It introduces a novel computational workflow that produces ordered and controllable vector-based force diagrams for real-time interactive design. Key advancements include an algorithm for identifying guiding trails within the form diagram's underlying graph to control its planarization, an augmented half-edge (AHE) data structure for seamless force diagram assembly, and an interface for generating force diagrams using the Combinatorial Equilibrium Modelling (CEM) method. These advancements are demonstrated through practical design cases using the enhanced VGS framework, aiming to improve collaboration between structural engineers and architects by providing a direct and visual link between form and forces.
•A novel method is proposed to generate controllable vector-based force diagrams for Single-layer Spatial (SLS) structures.•An algorithm is developed to generate guiding trails to control the planarization of the form diagram's underlying graph.•An augmented half-edge (AHE) data structure is developed for easy assembly of the force diagrams.•An interface is developed for constructing force diagrams using the Combinatorial Equilibrium Modelling (CEM) method.•Case studies demonstrate the enhancements brought by the updated vector-based graphic statics framework for designing.</abstract><pub>Elsevier B.V</pub><doi>10.1016/j.autcon.2024.105519</doi></addata></record> |
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source | ScienceDirect Freedom Collection |
subjects | 3D graphic statics Force diagram Form diagram Graph theory Load-path Planar graph Planarization Single-layer spatial structures Structural design Vector-based graphic statics |
title | Computational form-finding of single-layer spatial structures: Constructing force diagrams with Vector-based Graphic Statics and guiding trails |
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