Suchergebnisse
PVOPTI-Ray: Optimierung reflektierender Materialien und Photovoltaik im Stadtraum bezüglich Strahlungsbilanz und Bioklimatik
Im Rahmen des Projektes PVOPTI-Ray wurde der Einfluss der Reflexion und der Strahlungsbilanz in städtischem komplexem Gelände auf die Performance von fassadenintegrierter Photovoltaik (PV) untersucht. Ebenso wurde der Einfluss der Solarmodule und der Strahlungswandlung an Solarmodulen auf das Stadtklima analysiert.
Multi-WP - Hocheffiziente multivalente Wärmepumpenkonzepte zur thermischen Nutzung von Außenluft mit geothermischer Speicherung
Optimierung von Multi-WP-Systemen bestehend aus Luft-Wärmepumpen und Erdspeichern im Hinblick auf Erhöhung der Flexibilität und Effizienz ab 30 kW für Einzelgebäude sowie Quartierslösungen und Behandlung von Aspekten wie PV-Nutzungsoptimierung, Betriebsweise, Nutzungskonflikte und Lärmbelastung durch Luftwärmepumpen. Das Projekt wird die Nutzung der Wärmequelle Außenluft in Kombination mit Saisonspeichern als besonders effiziente Alternative für Heizung, Kühlung und Warmwasserbereitung etablieren.
P2PQ - Peer2Peer im Quartier
Das Projekt Peer2Peer im Quartier befasst sich mit der konkreten Umsetzung von Anwendungen zu Photovoltaik-Eigenverbrauchsoptimierung sowie Peer-to-Peer-Beziehungen auf Basis der Blockchain-Technologie in Quartieren und deren Validierung im Echtbetrieb.
3D*3B - 3D-Betondruck und Bewehrung für emissionsarme biegebeanspruchte Tragstrukturen des Hochbaus
Interdisziplinäres Projekt zur Integration von 3D-Betondruckelementen in vorwiegend biegebeanspruchte Tragstrukturen mit dem Ziel der nachweisbaren Reduktion von klimarelevanten Emissionen im Baubereich. Die Ergebnisse dienen der umfassenden Beurteilung technischer, logistischer und klimarelevanter Aspekte.
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.
THERM-opti-BALKON-P2 - Thermisch optimierte Balkonsanierung Phase 2: In-Situ-Versuchsanlage
Bei der thermischen Sanierung von Gebäuden stellen frei auskragende Balkone ein besonderes Problem dar. Mit dem THERM-opti-BALKON-System wird derzeit unter Laborbedingungen ein diesbezüglicher Lösungsansatz erforscht. Phase 2 soll eine In-Situ-Versuchsanlage unter realen Bedingungen als Technologiedemonstrator schaffen. Wichtigster Untersuchungsgegenstand ist das Langzeitverhalten des THERM-opti-BALKON-Systems.
FiTNeS - Facade integrated modular Split-heat pump for new buildings and refurbishment
The goal of FitNeS was the development of modular split heat pumps with compact and silent façade-integrated outdoor units for heating and domestic hot water preparation (and optionally cooling in combination with PV). The outstanding features of the concept are a modular design with a high degree of prefabrication and representing a visually and architectonically attractive, economic and sustainable solution for both new constructions and renovations. One of the main development goals is the minimization of sound emissions by means of optimized flow control.
mAIntenance - Investigation of AI supported maintenance and energy management
Optimized & reliable operation of Heating, Ventilation and Air Conditioning (HVAC) systems in terms of maintenance and energy management, using predictive, data-based & self-learning error detection. Conceptual design and prototype implementation of an AI (Artificial Intelligence) tool for automated data analysis and recommendations for technical building operators.
greening UP! Sustainable green maintenance, maintenance, maintenance of vertical greenery including legal aspects
Based on extensive surveys and analyses of existing vertical building greenery in outdoor areas (floor and system-bound façade greening) and vertical interior greenery, the project developed tailor-made green care, maintenance and repair concepts and addresses legal aspects. The "greening UP!" Knowledge pool with concrete recommendations and clearly presented findings as well as the conception of a digital tool for the "First Green Aid" complete the project.
fit4power2heat
The integration of heat pumps can increase the cost effectiveness of existing heating networks and counter the high costs for the expansion of power grids at the same time. Aim of the project is to develop innovative business models for small and medium municipal heating networks with focus on synergies between heat and power market. Main focus is a heat pump pooling for several heat grids.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.