Suchergebnisse

Stadt der Zukunft

SolCalc: Entwicklung eines normierbaren Rechenalgorithmus für die Energieverbrauchsschätzung und die Energieausweiserstellung von Wohngebäuden mit einem solaren Deckungsrad bis 100% unter Berücksichtigung optimaler Einbindung von Biomasse und Wärmepumpen

Entwicklung eines normierbaren Rechenalgorithmus für die Energieverbrauchsschätzung und die Energieausweiserstellung von Wohngebäuden mit einem solaren Deckungsrad bis 100% unter Berücksichtigung optimaler Einbindung von Biomasse und Wärmepumpen.

Stadt der Zukunft

FEELings - User Feedback for Energy Efficiency in Buildings

Der Energieverbrauch von Gebäuden wird maßgeblich durch das Verhalten von NutzerInnen beeinflusst. In diesem Forschungsprojekt wird ein neuartiges User-Feedbacksystem untersucht. NutzerInnen geben Feedback zur empfundenen Raumqualität. Auf Basis des Feedbacks werden Einstellungen an der Gebäudetechnik zur Energieeffizienz- und Komfortsteigerung optimiert. Der Proof-of-Concept für dieses neuartige System wird anhand von zwei Use-Cases erbracht.

Stadt der Zukunft

Vilipa - Visible light based Person and Group Detection in existing buildings

Evaluierung der technischen und wirtschaftlichen Machbarkeit eines Belegungserkennungssystems basierend auf der Technologie des Visible-Light-Sensings, das in Kombination mit der Gebäude­leittechnik den Energieverbrauch von Gebäuden senken soll. Ziel ist es low-tech/low–complexity Lösungen zu realisieren, die allein durch die Erfassung der Reflexionen des sichtbaren Lichts zwischen einzelnen Personen und Gruppen unterscheiden können.

Stadt der Zukunft

KityVR - Künstliche Intelligenz für die Erstellung von CityGML Modellen und VR Visualisierung

Ziel des Projektes ist die Verknüpfung von 3D Stadtmodellen und Virtual Reality für energierelevante Anwendungen als Key-Enabler für digitales Planen, Bauen und Betriebsmanagement. Fehlende Daten werden mit Hilfe von statistischen Enrichment Methoden berechnet.

Stadt der Zukunft

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.

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

COOL-QUARTER-PLUS - GHG-neutral cooling of office and research quarters

Development of systems for the emission-neutral cooling of office, research and urban quarters on the basis of photovoltaic or geothermal energy supply and user integration. Life cycle cost calculations and analyses of grey and operational greenhouse gas emissions allow a holistic assessment.

Stadt der Zukunft

SmallWindPower@Home - Impact assessment of building-mounted small wind turbines on performance, people, building and environment

Within the project SmallWindPower@Home the impact of complex obstacles on the local flow pattern as well as on the inflow and the performance of different building-mounted small wind turbines (SWT) had been evaluated. Furthermore the effects of these building-mounted SWT on the building, the resident people and the direct environment were analysed.

Stadt der Zukunft

INN'FIT4UM - Innsbruck "Fit4UrbanMission" - climate neutral Innsbruck 2030

Cities are the place where decarbonization strategies for energy, transport and buildings intersect. A few years ago, the municipality of Innsbruck set up a Smart City Group consisting of staff from the municipality, IIG, IKB and IVB to address this challenge. The goal of INN'F4UM is to develop a step-by-step plan to achieve climate neutrality for the city by 2030, building on an up-to-date representation of energy and resource flows together with the University of Innsbruck.

Stadt der Zukunft

GeoDatKlim - Preparation of an innovation lab - IoT and geo-AI-supported data management for the climate-neutral city

Preparation of a real laboratory that will enable numerous actors to research the actual benefits of urban data or their AI-supported analysis for a climate-neutral city. By clarifying strategic, technical and legal aspects as well as potential analyses along relevant use cases, the framework conditions for an open, multi-year research environment (real laboratory) in Vienna are set in motion.

Stadt der Zukunft

Ice-storage NEW - New economical ice storage concept for optimized heat storage using heat pumps and peak use of wind power

Development of a technically and economically optimized new ice-storage concept as a thermal wind power peak storage and to improve the performance of heat pumps as a contribution for peak smoothing of the electrical load profile.

Stadt der Zukunft

ÖKO-OPT-AKTIV - Optimised control and operating behaviour of thermally activated buildings in future urban districts

Development and simulation of scalable, distributed control strategies for the use of the storage effect of thermally activated components in buildings of future city districts for their energy supply by an energy centre.

Stadt der Zukunft

SmartControl - Standardized and smart control of municipal energy systems

The aim of the project is to develop a standardized and easy-to-implement procedure for communication, monitoring and control of decentralized technologies within municipal energy communities. Therefore, innovative interfaces and self-learning algorithms will be developed, which will ensure that the concept can be transferred to municipalities or neighborhoods without a great deal of data and measurement effort.

Stadt der Zukunft

GreEnergieausweis AT - Ways of integrating greenery into the Austrian Energy Certificate

Adaption of the calculation models in the energy certificate in such a way that the greening of buildings can be depicted as realistically as possible and assessment of the acceptance of implementation by relevant stakeholders.

Stadt der Zukunft

BIM2BEM Flow - Continuous BIM-based energy efficient planning

Automated integration and assignment of exchange requirements between the design and simulation programs, based on the elaborated exchange information requirements, should enable continuous energy efficiency planning along the design phase.

Stadt der Zukunft

Sophokles - Solar shading lamellas with photovoltaic coating for climate-neutral, energy-efficient structures

Development of lightweight, strip-like photovoltaic modules that combine shading and emission-free power generation in one monolithic component. The size and module voltage of the photovoltaic blinds can be individually adapted to the conditions of the building. The core of the innovation is an interconnection concept for thin-film solar cells, with which the film-like photovoltaic material can be interconnected in series and in parallel as required.

Stadt der Zukunft

DDM Feldkirchen

Demonstration of digitalization measures in heating networks using the example of Feldkirchen district heating network

Stadt der Zukunft

BONSEI! Optimal use of existing buildings – energy efficient implementation of renovation!

The project BONSEI! would like to support an energy efficient and socially acceptable densification of privately owned residential buildings in urban space and to develop a methodological basis for resource efficient urban areas. The results are used for the conception of an innovative service in order to provide a neutral consulting regarding private densification plans.

Haus der Zukunft

smart façade - energy potential of adaptive façade systems

A specially developed simulation model is employed to ascertain the energetic potential of adaptive façade systems. The dynamic behavior of the physical properties of the adaptive façade system reacts to both internal and external changing conditions. The goal was the development of an adaptive façade, which helps provide maximum comfort for the building occupants with minimum energy consumption.

Stadt der Zukunft

Urban cooling demand in Austria 2030/2050 (UKÖ 2030/2050)

Systematic processing of the increasing cooling demand and presentation of the geographical location of the cooling demand in Austria. The result serves as a decision-making aid for the development of climate protection measures and climate change adaptation strategies as well as an estimate of future cooling demand.