Suchergebnisse

Stadt der Zukunft

Ergebnisband „Gebäudetechnologien“

Der vorliegende Ergebnisband stellt abgeschlossene Projekte aus dem Forschungs- und Technologieprogramm „Stadt der Zukunft“ des Bundesministeriums für Klimaschutz, Umwelt, Energie, Mobilität, Innovation und Technologie (BMK) im Bereich innovativer Gebäudetechnologien vor. Die gewonnenen Erkenntnisse sollen eine Entwicklung in Richtung energieeffiziente und klimaverträgliche Stadt unterstützen, die auch dazu beiträgt, die Lebensqualität und die wirtschaftliche Standortattraktivität zu erhöhen. Schriftenreihe 1/2020
Redaktionelle Gestaltung: Bianca Pfefferer, Hannes Warmuth (ÖGUT)
Herausgeber: BMK, Aktualisierung: Mai 2021
Deutsch, 25 Seiten

Downloads zur Publikation

Stadt der Zukunft

Sondierung für PV-Fassadensysteme aus leichten Kunststoff-Modulen mit reversiblen Befestigungen für Neu- und Altbauten (PV-FAS_light+easy)

Sondierung für ein neues einfaches, kostengünstiges und gebäudeintegrierbares PV-Fassaden-System aus Kunststoff-PV-Modulen durch erste Untersuchungen zur Befestigungstechnik, zur Bauphysik, zum Brandschutz und zur Elektrotechnik um die Gebrauchstauglichkeit, die Anwendbarkeitsbereiche und das Ertrags- und Anwendungspotenzial für den Neubau und für Bestandsgebäude beurteilen zu können. Schriftenreihe 56/2019
A. Korjenic, E. Heiduk, K. Berger, E. Rauter, C. Lebeda, M. Fraisslich
Herausgeber: BMVIT
Deutsch, 70 Seiten

Downloads zur Publikation

Stadt der Zukunft

Thermisch optimierte Balkonsanierung (THERM-opti-BALKON)

Bei der thermischen Sanierung von Gebäuden stellen frei auskragende Balkone ein besonderes Problem dar. Das Projekt hatte zum Ziel, die Grundlagen für die Entwicklung eines praxistauglichen und kostengün­stigen Befestigungssystems zu schaffen, das die thermisch entkoppelte Wiedererrichtung der Balkone im Zuge der Sanierung erlaubt und damit die Effizienz der Wärmedämmmaßnahme deutlich verbessert. Schriftenreihe 21/2017
N. Fleischhacker Berichte Deutsch, 59 Seiten

Downloads zur Publikation

Klimaneutrale Stadt

FavoriteFlows – Innovative solutions for water and energy cycles in buildings for a climate fit city

Demonstration of detailed planning work and implementation of water cycles (building-integrated constructed wetland wastewater treatment) and energy cycles (wastewater heat exchanger) on a large residential apartment development for climate resilience, resource efficiency and high living standard.

Haus der Zukunft

Plus-Energie-Gebäude durch ein adaptives Fassadensystem: thermocollect

Anhand eines Mustergebäudes wird dargestellt, wie ein altes Gebäude durch Einsatz des adaptiven Fassadensystems thermocollect zu einem Plusenergiegebäude saniert wird. Darüber hinaus wird die Wirksamkeit des Systems im Neubau und vor transparenten Bauteilen gezeigt und es werden Planungsunterlagen sowie ein detailliertes Arbeitshandbuch für Fachkräfte erstellt. Schriftenreihe 11/2018
R. Schwarzmayr, J. Greil, R. Berger, M. Grünseis
Herausgeber: BMVIT
Deutsch, 45 Seiten

Downloads zur Publikation

Haus der Zukunft

Hocheffiziente Kombinationen von Solarthermie, Photovoltaik und Wärmepumpenanlagen (Sol2Pump)

Schriftenreihe 14/2017
D. Reiterer, E. Sarugg
Herausgeber: BMVIT
Deutsch, 127 Seiten

Downloads zur Publikation

Stadt der Zukunft

The Box - Thermal High Performance Decoupling - Next Generation Thermal Break Technology

The project pursues the overall strategic objective "solution of the problem-inducing heat bridge". For this purpose, the thermal bridging losses should be reduced by the factor of 15 in contrast to the state of the art. The significant increase in efficiency should rely on existing system solutions, but incorporating a new holistic view in terms of construction, geometry and materials.

Stadt der Zukunft

BIMSavesEnergy - BIM-based planning-methods for the assurance of energy-efficiency in the building process

The Building Information Model (BIM) brings about fundamental changes in the planning and construction of buildings, as the common base makes it possible to work closely together across disciplines in construction projects. In this project, BIM-based planning methods were developed, which make the influence of planning decisions on energy efficiency quantifiable and controllable in the management process.

Stadt der Zukunft

ecoRegeneration: Development of a "Merit-Order" in order to assess regeneration heat for geothermal probes within urban residential neighbourhoods

In urban residential areas there are not enough active-cooled usages, to use the waste heat of the cooling process as required regeneration heat for geothermal probes; free cooling of the apartments is not sufficient. The project is developing various options (waste heat from commercial uses in the ground floor zones of residential buildings, by using waste heat of data centres, additional installation of heat generation systems for regeneration) within the urban settlement area, business models and is calculating life-cycle-costs of all solutions. The result should be a kind of "merit order" for regeneration heat.

Stadt der Zukunft

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.

Stadt der Zukunft

LessIsMore - Energy efficient human centric lighting by innovative components and daylight integration

Human Centric Lighting (HCL) is focused on the positive visual and non-visual (biological) effects of light on humans, but is wasting energy by the inefficient use of components and daylight. In LessIsMore an exemplary pilot installation will be developed and evaluated.

Stadt der Zukunft

MOTIVE – Modeling, Optimizing, and technical integration of Vacuum-Glazing-Elements

This project addressed the development of construction details for the implementation of vacuum glazing panels in new windows. In this project such constructions (form of frame, thermal bridges, structural aspects, mounting of glass) were explored via empirical experiments and via simulation. As an outcome, a mock-up was constructed, and the findings were documented in a comprehensive document.

Stadt der Zukunft

P³Power - Plug&Play Storage of Photovoltaic Power

The core of the project P³Power is the measurement technology NetDetection, which is able to detect the power consumption of a household from any point, e.g. a regular wall socket. Based on this technology a plug&play powerplant, consisting of photovoltaics and battery pack, is realized. The system is able to guarantee 100% self-consumption within flexible aggregates (from single households to whole communes) without any changes of existing infrastructure. The measurement technology will be implemented into digital hardware, evaluated comprehensively in lab and household environment and subsequently new energy service business models are developed.

Stadt der Zukunft

GrünStattGrau – Innovations for Greening Cities "The green living laboratory"

GrünStadtGrau represents the holistic of competence for green building technologies such as green roofs and living walls in Austria. It generates impulses for urban green infrastructure on buildings and links innovative products and projects, supports through know-how and analysis for implementation processes. GrünStattGrau guides urban and participatory strategies from development to implementation.

Stadt der Zukunft

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.

Haus der Zukunft

Syn[En]ergy: Development of Potential Synergy Effects between the Interdependency of Urban Planning goals and Photovoltaic Usage on Open Urban Landscapes

Open spaces such as parking lots, brownfields and some categories of recreation areas offer an underutilised potential for photovoltaics in urban regions. In the course of Syn[En]ergy an inter- and transdisciplinary approach potential synergies and conflicts with other use demands were investigated, a typology and practical solutions for selected areas with regard to requirements from economy, urban planning and design, legal as well social aspects developed, and then evaluated by stakeholders from enterprises, administration and the general public.

Stadt der Zukunft

Energy-Sponge: The Building as an Energy-Sponge - Electricity In - Heat Out

Innovative, dynamic control concepts had been developed which enable (air) heat pumps in combination with PV- or renewable grid electricity to use the building mass of a multi-familiy house as heat storage. User acceptance had been evaluated and possible business models had been developed.

Haus der Zukunft

solSPONGEhigh - High solar fraction by thermally activated components in an urban environment

Within this project the intensive use of thermally activated building elements (TABs) as an additional thermal storage in different buildings, with solar technologies (thermal, PV) preferred for energy supply, was investigated. The aim was to activate and use the thermal storage potential that is immanent in the building elements and thereby achieve solar coverage of the building's heat demand of nearly 100 %.

Stadt der Zukunft

PowerShade - Development of electricity-generating shading solutions for energy-flexible buildings in urban space

The main goal of the cooperative R&D project "PowerShade" was the development of low-cost and universally usable electricity-generating shading solutions for energy-flexible buildings in urban space.