Suchergebnisse
Die CO2 neutrale Baustelle - Ein Beitrag zum Klimaschutz der österreichischen Bauwirtschaft

Identifikation aller auf Baustellen anfallenden direkten und indirekten CO2- bzw. THG-Emissionen. Analyse der Rahmenbedingungen und Technologien, um Möglichkeiten für deren Steuerung aufzuzeigen. Gleichzeitig wurden Mehrwerte wie beispielsweise Kosten- und Nutzen-Vorteile einer CO2-neutralen Baustelle aufgezeigt und quantifiziert.
Schriftenreihe
36/2021
R. Obernosterer, L. Winkler, B. Lepuschitz, M. Weigert, H. Daxbeck, G. Goger, N. Hörzinger, N. Kisliakova
Herausgeber: BMK
Deutsch, 119 Seiten
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The Green P - Nutzung von städtischen Verkehrsflächen für die Produktion von Biomasse

Zahlreiche Verkehrsflächen im städtischen Umfeld werden nur einen geringen Teil der Zeit tatsächlich genutzt. Inhalt dieses Projekt war, die Möglichkeit zu untersuchen, solche Flächen durch Integration von Photobioreaktoren zusätzlich zur Produktion von Biomasse zu nutzen und die Systeme möglichst vollständig in die urbanen Stoff- und Energiekreisläufe einzubinden.
Schriftenreihe
25/2018
K. Lichtenegger, K. Meixner, R. Riepl, F. Schipfer, M. Zellinger
Herausgeber: BMVIT
Deutsch, 73 Seiten
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Materialintensität der Innenentwicklung - Ressourcenbewertung und Lokalisierung städtischer Entwicklungspotentiale (M-DAB2)

Bei der Bewertung von Innenentwicklungspotenzialen wurde erstmals auch die Materialintensität der Innenentwicklung (anfallende Stoffmengen) für unterschiedliche Entwicklungsvarianten berücksichtigt. Dabei wurde ein Methodenset zur holistischen Bewertung von Potenzialflächen und verschiedene Entwicklungsvarianten und -szenarien zur ressourcenschonenden Innenentwicklung geschaffen.
Schriftenreihe
7/2025
S. Bindreiter, W. Lorenz, L. Grabuschnig, E. A. Dengg, G. Wurzer, V. Pachauer, N. Ugljanin, P. Nageler, P. Rasper, J. Fellner
Herausgeber: BMK
Deutsch, 122 Seiten
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GreenTech-Renovation - Energetische Sanierung von gläsernen Gebäuden von architektonischem Wert

Der Schwerpunkt des Projekts GreenTech-Renovation war, innovative Lösungen zur energetischen Sanierung von architektonisch wertvollen Bauten mit hohen Glasanteil zu finden. Dafür wurde ein zukunftsweisendes bauphysikalisches Konzept entwickelt, das den Einsatz alternativer Energieformen beinhaltet. Ein intelligentes Nutzungskonzept kann mit ökologischem und sozialem Engagement die energetischen Sanierungskonzepte verstärken und deren Nachhaltigkeit garantieren. Die 10-R der Kreislaufwirtschaft (Refuse, Rethink, Reduce, Reuse, Repair, Refurbish, Remanufacture, Repurpose, Recycle, Recover) dienen dabei als Leitlinie.
Schriftenreihe
74/2023
S. Tillner, A. Willinger, S. Stockhammer, T. Zelger, J. Leibold, E. Paráda, D. Bell, P. Bauer, L. Zeilbauer, S. Formanek, K. Mauss, B. Lipp, T. Dobra
Herausgeber: BMK
Deutsch, 152 Seiten
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Urban Mining - Energy and resource savings due to urban mining
The use of natural resources in long-lived products and buildings has led to the build-up of enormous urban material stocks. The present project analyses the potential of these urban mines to increase the resource efficiency of modern cities.
M-DAB2: Material intensity of inner development - resource assessment and localization of urban development potentials
For the first time, the material intensity of inner development (in terms of material quantities) for different design variants was considered in the evaluation of inner development potentials. A set of methods for the holistic evaluation of potential areas and different development variants and scenarios for resource-saving inner development was created.
AR-HES-B – Energy storage, production and recovery of valuable substances in wastewater treatment plants
AR-HES-B develops technologically based concepts of municipal wastewater treatment plants in order to convert them from energy consumers into a hybrid energy provider, energy storage and a provider of resources. The concept enables wastewater plants to turn into an important platform in the regional energy and mass transfer.
SynENERGY - Energy optimised settlement development by making use of synergies of energy efficiency, spatial planning and building culture
SynENERGY aims at an innovative, holistic approach to urban district optimization. The project targets a comprehensive analysis of the framework and urban development concept which includes not only optimisation of sustainable energy supply and use but also increased material flows (construction and disposal) at urban district level.
R-Bau - Development of a replicable deconstruction strategy for residential buildings to force the recovery-oriented dismantling
The aim of the project was to develop a replicable deconstruction strategy for residential buildings to force the recovery-oriented dismantling. The key aspects of the project are the development of standardized building models in order to analyse the recovery-oriented dismantling process, the design of a deconstruction catalogue and the transfer of the project findings to refurbishment, design and erecting of residential buildings.
SURO - The urban underground as mine? Potential of secondary resources in subsurface infrastructure systems
Feasibility of a resource cadaster to inventorize, characterize and locate material stocks in subsurface infrastructure networks. The results are used for the economic assessment of secondary resource potentials.
SCI_BIM - Scanning and data capturing for Integrated Resources and Energy Assessment using Building Information Modelling
The aim of the project is to increase the resources- and energy efficiency through coupling of various digital technologies and methods for data capturing (geometry and materials composition) and modelling (as-built BIM), as well as through gamification.
Energy2POG - Hybrid Energy Cluster Pogusch - Renewable energies and cost-efficient operation
The aim of the project was the design, optimisation and demonstration of a hybrid energy supply system as well as optimised material flows for a restaurant and hotel business in an exposed location. The concept allows the integration of material flows into the heat and energy supply system.
Circular Twin - A Digital Ecosystem for the Generation and Evaluation of Circular Digital Twins
By 2030, more than the equivalent of two Earths will be needed to meet the demand for natural resources, therefore a transition to circular systems is essential, especially in the construction industry. The digital "Circular Twin" ecosystem enables the early implementation of circular economy goals as well as end-to-end digitalization in construction utilizing Digital Twins, Generative Design Algorithms and Virtual Reality.
Joining Cards - Investigation of de-constructable fastening and joining techniques for the development of mono-material interior systems made of cardboard
Strategic examination of cardboard products and paper-based materials for the development of de-constructible interior systems and the definition of building components and their interfaces. The result forms the basis for further research projects in the form of a comprehensive knowledge gain.
BIMstocks - Digital Urban Mining Platform: Assessing the material composition of building stocks through coupling of BIM to GIS
The main goal of BIMstocks is the development of a method for the digital capturing of the material composition of the existing building stock for follow up modelling of an Urban Mining Platform as well as for the prediction of the recycling potentials.
RCC – Reduced Carbon Concrete: Implementation of CO2-redudes concrete in construction sites
The objectives of the present project "RCC - Reduced Carbon Concrete" were to test the current knowledge about the temperature-dependent curing processes of performance concretes by concrete work on large components on the construction site, under summer and winter conditions, and in precast production. The results will be incorporated into construction practice and standardization work.
GreenTech-Renovation - Energetic Renovation of Glass Buildings of Architectural Value
The focus of the GreenTech-Renovation project was to find innovative solutions for the energetic renovation of architecturally valuable buildings with a high proportion of glass. A future-oriented building physics concept that includes the use of alternative forms of energy had been developed for this purpose. With ecological and social commitment, an intelligent usage concept could strengthen the energetic renovation concepts and guarantee their sustainability. The 10-Rs of the circular economy (Refuse, Rethink, Reduce, Reuse, Repair, Refurbish, Remanufacture, Repurpose, Recycle, Recover) will serve as a guideline.
greenWATERrecycling – utilization of greywater for energy recovery and for providing greywater-filtrate for watering green walls
Development of a system for energy-recovery of waste heat of greywater and of greywater-filtrate in ordert o reduce the energy consumption of hot water supply and the water consumption for irrigation.
Flucco+ - Flexible user comfort in quarter-hourly CO2-neutral Positive Energy Districts (PED)
The aim of the project is to improve the planning basis for the construction and operation of energy flexible buildings in three specific areas. First the further development of existing models of thermal comfort for dynamic situations, second the quantification of future energy grid usefulness and third the holistic testing of the developed comfort and CO2 model at three potential positive energy districts (PED), taking into account the ecological assessment as well as the life cycle costs.
3D*3B - 3D-Concret Printing, Reinforcement for low carbon and bending stressed structures.
The project is about 3D printed structural elements and their integration in building structures. The focus is predominantly set on bending stresses structural elements like panels and slabs. Results will point out technical, logistic and climate relevant aspects.