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IntCDC für mehrstöckige Gebäudesysteme Forschungsnetzwerk 1

IntCDC für mehrstöckige Gebäudesysteme

Details zum Projekt

Das Forschungsnetzwerk 1 befasst sich mit der Co-Design-basierten Entwicklung von Methoden, Prozessen und Systemen für mehrstöckige Gebäude, wie Wohn- und Bürogebäude, und stellt sich der Herausforderung des hohen Integrationsgrades, der in diesem Zusammenhang erforderlich ist.

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Liste der Forschungsprojekte

Phase 1 (2019-2022)

RP 1-1: Functionally Graded Concrete Building System

RP 2-1: Cyber-Physical Fabrication of Functionally Graded Concrete Components

RP 3-1: Multi-Storey Wood Building Systems

RP 4-1: Cyber-Physical Wood Fabrication Platform

RP 5-1: Reconfiguration of Training, Skills and Literacy

RP 6-1: Biocomposite Façade Panels

RP 7-1: Integrated Testing and Numerical Verification

RP 8-1: Cyber-Physical Construction Platform

RP 9-1: Integrative Data Processing

RP 10-1: Architectural, Historical and Social Science Perspectives

RP 18-1: Holistic Social, Environmental and Technical Quality Model

RP 19-1: Robotic Kinematic System for Parallel Construction

Rp 20-1: Knowledge Representation for Multi-Disciplinary Co-Design

 

Phase 2 (2022-2025)

RP 1-2: Functionally Graded Concrete Building System – Design, Optimisation, Digital Production and Reuse

RP 3-2: Co-Design of Multi-Storey Wood Building Systems for Building Stock Extension

RP 4-2: Cyber-Physical Fabrication Platform: Fluid Fabrication

RP 6-2: Biocomposites Façades and Extension Systems

RP 8-2: Cyber-Physical Construction Platform

RP 9-2: Data Processing and AI for Predictive and Adaptive Co-Design

RP 10-2: Multi-Perspective Co-Design in Existing Urban Contexts

RP 18-2: Holistic Quality Model for Extension of Existing Buildings

RP 19-2: Co-Design Methods for Developing Distributed Cooperative Multi-Robot Systems for Construction

RP 20-1: Knowledge Representation for Multi-Disciplinary Co-Design

RP 21-1: Modular Data Architecture for Preparation, Annotation and Exchange for Conceptual Design

RP 22-1: Prestressed Graded Concrete Components with Basalt Reinforcement

RP 23-1: Durability of Timber Softwood/Hardwood Composite Systems

RP 24-1: Human-Exoskeleton Interaction in Collaborative Tasks

RP 26-1: AI-Supported Collaborative Control and Trajectory Generation of Mobile Manipulators for Indoor Construction Tasks

RP 28-1: Visual Support for Architectural Design and Construction

RP 29-1: COLife: More-Than-Human Perspective to Codesign

digitize wood ist ansässig am Exzellenzcluster IntCDC an der Universität Stuttgart und wird vom Ministerium für Ländlichen Raum Baden-Württemberg (MLR) im Rahmen der Holzbau-Offensive BW gefördert.