Suchergebnisse
sustAIn4Build – KI-Kompetenz für nachhaltiges Gebäudemanagement in klimaneutralen Städten
Das Projekt sustAIn4Build zielt darauf ab, die Energieeffizienz und Nachhaltigkeit im Gebäudetechniksektor durch den gezielten Einsatz von Künstlicher Intelligenz (KI) zu steigern. Durch branchenspezifische Weiterbildungsmaßnahmen werden österreichische Unternehmen befähigt, KI-Technologien effektiv in ihre Prozesse zu integrieren, um ressourcenschonende, kosteneffiziente und nachhaltige Lösungen zu entwickeln. Dies stärkt deren Wettbewerbsfähigkeit und trägt zur Erreichung der europäischen Dekarbonisierungsziele bei.
AnergieLeichtGemacht – Entwicklung von multiplizierbaren Umsetzungsmodellen für Geothermie-AnergieNetze zur Dekarbonisierung im Gebäudebestand
Das Projekt entwickelt standardisierte technische, organisatorische und finanzielle Umsetzungsmodelle für Anergienetze zur nachhaltigen Wärmeversorgung in Städten und Gemeinden. Durch die Identifikation geeigneter Siedlungstypologien, die Analyse von bestehenden Rahmenbedingungen und den Einbezug von Stakeholdern werden skalierbare Lösungen erarbeitet. Ziel ist es, Hürden in der Planung und Umsetzung zu reduzieren und Investitionen in lokale Anergienetze zu erleichtern.
RCC2 - Ökobilanz heizbarer Schalung für CO2-reduzierten und klimaneutralen Beton
Experimentelle Entwicklung innovativer Rezepturen CO2-reduzierten Betons sowie beheizter Schalung zur Unterstützung der Frühfestigkeitsentwicklung bei winterlichen Temperaturen.
FavoriteFlows - Innovative Lösungen für Wasser- und Energiekreisläufe in der klimafreundlichen Stadt
Demonstrationsvorhaben zur Planungsarbeit und Implementierung von Wasserkreisläufen (dezentrale Wasseraufbereitung mittels Pflanzenfilter) und Energiekreisläufen (Abwasser-Wärmetauscher) an einem Großbau zwecks Klima Resilienz, Ressourcenschonung und hoher Lebensqualität.
ReSpace – Reclaiming Spaces
ReSpace entwickelt ein KI-gestütztes Modell zur Identifikation, Kategorisierung und Aktivierung versiegelter Flächen. Dabei werden bestehende Datenquellen (Luft- und Satellitenbilder, Mobilfunkdaten, Grundbucheinträge) integriert und mit einer dynamischen Analyse angereichert, um evidenzbasierte Handlungsempfehlungen abzuleiten.
Wall systems made of renewable resources

Testing and optimising post and beam straw bale constructions Testing the thermal insulation (specific heat conductance) and fire resistance of a construction (combustibility grading period), optimisation of building junction elements, development of a mobile testing lab for efficient and effective quality management
Small wind turbines for households and companies
In a practical way the project showed that with optimised small wind turbines a useful potential of wind power can also be generated at different suitable locations with low wind conditions directly at households and companies.
GIPV-Balcony-Element
Under the basic principle GIPV as "energy source balcony" this project should help covering a part of the electricity needs from renewable energy. By integrating the already preassembled PV elements into the balcony construction, the elements for the final assembly range up to 4 meters. The aim is to win besides private persons also particularly the gastronomy, especially the hotel sector (in tourist regions) as well as the housing sector (e.g. via architects) as customers.
thermocollect: realisation of a plus energy building by a solar active facade system
The project demonstrates the application of a solar active facade system in the course of the renovation of an existing building in order to achieve the plus-energy standard. Moreover, the effectiveness of the system will be demonstrated on new buildings and transparent components as well. The final outcome will be a manual for the application and implementation of the façade system focusing on the segment of specialists and skilled labour.
Facade Integrated Solar Collectors

Within the framework of this project system-, structural- as well as building physical basis theories should be elaborated, which will serve as a basis for constructional and aesthetically attractive solutions for the production of facade integrated solar collectors without thermal separation. The recyclability of the materials used and resource efficiency play a central role when it comes to the development of constructional solutions.
Research work on outside sprayed-on cellulose insulation covered with plastering

This research work was done to expand knowledge about outside sprayed-on cellulose insulation application focusing on mechanical and physical properties respectively.
ProKlim+ - Use of Model Predictive Control to optimize solar power consumption in case of increased energy efficiency.
Using weather forecast for building automation can help improving the energy efficiency of buildings and, thus, saving energy. In the project ProKlim+ the forecast of solar radiation will be used to optimize the building automation to satisfy the needs of the building users, and at the same time to minimize the energy demand on the one hand and to maximize the consumption of self-produced energy on the other hand.
Sorption cooling and air dehumidification device
Solar-assisted air-conditioning in combination with comfortable controlled ventilation systems soon possible and affordably for building owners. With a new part DEC-systems should become acceptance.
New High thermal insulated lightweight timber-frame constructions
Development for the application in the passive house standard (e.g. low-energy houses).
Energetic building refurbishment in protection zones

Standardized solutions as a help and guideline for building-owners, authorities and companies
baubookPlus - Expansion of an extensive knowledge database of sustainable buildings
By the foundation of the baubook GmbH in 2008 the two databases of building products "öbox" and "ixbau.at" have been merged. The new database baubook was expanded. Essential functions (central product declaration, decentral quality management) and fields of products were added.
Photovoltaic solar modules for building integration
Development of new manufacturing technique for photovoltaic solar modules, which fulfil the special requirements of building integration.
Product and system development for an inside thermal insulation construction of historical houses using magnesite bonded wood wool panels

The objective of this project is to examine the ability of magnesite bonded wood wool panels as an inside thermal insulation system, especially for houses with historical facades and to acquire starting points for further development of the products and components being used. Parallel to the data which will be calculated in a theoretical FEM-model, a field trial will be carried out to prove the influence on the inside room climate. In addition the sustainability of the system will be analysed.
MODESTORE - Modular High Energy Density Sorption Heat Storage

Seasonal storage of solar heat for use in low energy and passive houses (new buildings as well as old buildings).
ThinkHome: Improved energy efficiency based on artificial intelligence in future homes
ThinkHome is a networked controlled home of the future with the ultimate goal to optimise energy efficiency and user comfort at the same time. On this way, smart interaction between all building services is of utmost importance. Goals of this project include the definition of a comprehensive knowledge base that holds all relevant building data, the evaluation of control strategies based on artificial intelligence and machine learning, as well as agent based software engineering.