View as PDF (32.6 KB)

Digital Lifecycle of Building Envelopes

Overview

Abstract

“The digital transformation will change everything” – with this quote in mind a deep look into the current facade business will be given with a special attention to digitalization.

This paper provides insights into the current situation from the perspective of an international facade system supplier and gives examples from daily work and scientific research projects.

Digitalization influences the facade business already in nearly each planning step. Renderings and visual simulation helps the architect to make decisions in the early planning stage. In addition, the development of 3D visualization has led to the creation of 3D tutorials for installations purposes. Finite element analysis, parametric planning tools and rapid prototyping are used in the facade system development to control design parameters without the necessity of a physical mockup. In the future, the cyber physical systems and 3D-tutorials in combination with synchronization of the data from the digital building twin will lead to zero tolerance fabrication and installation of complex facade products with sensor/motor- interfaces. These sensor driven, automated and interconnected products - like the so-called active noise cancelling facade components - are the base for an intelligent, self-controlled building envelope. Further innovations are expected in the process steps of facade maintenance and upgrading that will have huge consequences regarding a planned and controlled end of life.

The above shows that digitalization is already established in each step of the current facade life-cycle. An interconnection of these currently isolated digitized steps will lead to a digital transformation of the full process. The result would be a new digital life-cycle of the building envelope with a continuous data flow and indispensable consequences throughout the full process that provides a fertile ground for innovations in the digital age.


Authors

Rights and Permissions

Agarwal, Rajat, Shankar Chandrasekaran, Mukund Sridhar. „Imagining construction´s digital future”. https://www.mckinsey.com/indus... (accessed June 25, 2019).

Arztmann, Daniel. “Climate Change and its Influence on Glazed Curtain Wall Design”. Engineered Transparency 2018: 149-157. Ernst & Sohn. 2018

Arztmann, Daniel. “Recycling of Facade Systems”. Master Thesis at the University of Applied Sciences Detmold, Germany. 2010

Birrel, Danny. “A Research and Delivery Foundation for the Facade Design Process Utilising Building Information Modelling”. Master Thesis at the University of Bath, United Kingdom. 2014

The Economics Times. “Definition of ‘Product Life Cycle’”. https://economictimes.indiatimes.com/definition/product-life-cycle(accessed July 2, 2019)

Heusler, Winfired, Eva-Maria Faltus, Daniel Arztmann. “Gesunde Gebäude gesund bauen”. Glasbau 2018: 59-75. Ernst & Sohn. 2018

Krys, Christian, Klaus Fuest. “Roland Berger Trend Compendium 2030”.October 2017. https://www.rolandberger.com/e... Dossiers/Trend-Compendium.html (accessed June 25, 2019).

Lother, Klaus. “RFID revolutioniert komplexen Fassadenbau”. https://www.ingenieur.de/technik/fachbereiche/mikroelektronik/rfid-revolutioniert-komplexen-fassadenbau/(accessed August 23, 2019)

Luber, Stefan, Nico Litzel. “Was ist ein Cyber-physisches System CPS?”. https://www.bigdata-insider.de/was-ist-ein-cyber-physisches-system. (accessed July 8, 2019)

PlanToBuild. https://www.plantobuild.de (accessed July 8,2019)

Ramirez, Jhosangela. “Automation of Processes in the Facade Engineering Field”. Master Thesis at the University of Applied Sciences Detmold, Germany. 2019

Strube, Gerhard. “Modelling Motivation and Action Control in Cognitive Systems”. Mind Modelling: 89-108. Pabst. 1998

Suh, Byong Kook. “A Research for Technologies of Sound Reduction on Windows”. Master Thesis at the University of Applied Sciences Detmold, Germany. 2017