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Haus der Zukunft

FFF-TaliSys - Freeform Systems for Daylighting to be Integrated in a Façade and in a Skylight

In the course of the project FFF-TaliSys novel daylighting systems based on freeform surface technology were developed and implemented into functional models, thus, innovative systems that solve the contradictory requirements of daylighting systems.

Stadt der Zukunft

FIVA - Window prototypes with integrated vacuum glazing

This project targets the further development of windows with integrated vacuum glazing. Such glass products regularly feature a very low Ug-value, and their dimension is in comparison to insulation glass thin and light. As such, these products offer a new alternative for highly-insulating window constructions, and thus also for energy-efficiency measures in buildings. The project is based on the findings of a previous exploratory project (MOTIVE) and focuses on the construction of functional prototypes of vacuum glass windows together with business partners.

Klimaneutrale Stadt

FROSCHBERG 2.0 - Designing existing neighborhood(s) to be renewable and replicable

Exploration of replicable solutions for the socially acceptable transformation of existing neighbourhoods towards climate neutrality using the example of the Froschberg workers' housing estate. The result, the presentation and integration of climate neutrality into the refurbishment roadmap for the Froschberg workers' housing estate, serves as a starting point for implementation in a follow-up project.

Klimaneutrale Stadt

Favorite Facades Reuse

The exploratory project "Favorite Facade ReUse" has set itself the goal of renovating and thermally upgrading buildings with curtain facades with a maximum proportion of reuse and the greatest possible protection of the residents. The authenticity of the building is preserved, and CO2 emissions are minimized.

Stadt der Zukunft

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.

Klimaneutrale Stadt

Fit4NEB_Linz - Sommerfeld Ebelsberg: NEB-Neighbourhood development sustainable, aesthetic, participatory

Building on the previous planning and participation processes, sustainable, aesthetic and participatory development principles should be defined, and an New European Bauhaus (NEB) quality assurance process set up. Furthermore, implementation projects that are suitable for the EU funding program Horizon Europe should be designed.

Klimaneutrale Stadt

FlexHP - AI-supported control models for optimising the flexibility of heat pumps to reduce the load on the electricity grid

Development of a new type of energy management system for heat pumps that enables methods for intelligent heat pump operation and thus maximises flexibility. This requires forecast-based models for control that utilise technologies such as machine learning.

Stadt der Zukunft

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.

Klimaneutrale Stadt

FluccoSan - Circular energy flexibility for resilient, climate-neutral refurbishments

FluccoSan aims to develop innovative and cost-effective refurbishment solutions for the building sector that contribute to achieving the Austrian federal government's climate targets. The focus is on energy-efficient, minimally invasive and socially acceptable measures, so-called “dynamic renovations”. By integrating the circular economy and social science research, these solutions should ensure long-term sustainability and a high level of acceptance among users. Status: ongoing

Haus der Zukunft

From courtyards to lightyards

The feasibility of daylight-optimized solutions for retrofitting courtyards by an intelligent alignment of different materials has been examined. With it, daylighting levels in lower floors can realistically be increased tenfold. Additionally, a calculation tool for generating and evaluating optimal courtyard solutions was designed. Besides daylighting parameters also economic criteria were considered.

Stadt der Zukunft

Further Investigations and Monitoring of the Green Walls at GRG7 Kandlgasse

Following on from the completed research project "GrünPlusSchule", in which various greening measures were implemented at and in a school in Vienna's 7th district (GRG7), this follow-up project takes up further unanswered questions and is dedicated to detailed measurement data evaluations of the effects of indoor and outdoor greening.

Stadt der Zukunft

Future Quarter - Way to an energy-plus quarter in Vienna

Development of transferable concepts for energy-plus quarters as substantial preparatory work for the implementation of an energy showcase quarter in Vienna based on six concrete areas. The support for the broad application of the concept shall be a precursor for the realisation of future energy showcase quarters in Vienna and other cities.

Stadt der Zukunft

Future quarter 2.0 - Replicable, thermally and electrically grid-supportive conception of (positive energy) districts in a dense urban context

Development of a replicable concept for grid-supportive integration of innovative (positive energy) district with high on-site energy supply into the existing network infrastructure (electricity and district heating network).

Stadt der Zukunft

G2G – Innovation axis Graz-Gleisdorf

Development of testbeds and demonstration zones within already designated areas for urban development along the Graz-Gleisdorf Innovation-Axis with a focus on energy, integrated building technology, smart city-spaces, compact settlement structures, generational living, and ‘cities of short ways’. It will pay specific attention to intermodal mobility as well as ICT-based solutions.

Haus der Zukunft

GEMA – Assessment of the performance of energy-efficient demonstration buildings

In GEMA, the project team will study and analyse the energy consumption of at least 10 commercial and residential buildings in Austria, which include innovative technologies or concepts for minimising their energy requirements. The results will allow for the potential optimal performance in terms of energy, environmental and social indicators of buildings in future construction projects.

Stadt der Zukunft

GLASGrün - Regulation of climate, energy demand and comfort in GLASS buildings through structurally integrated vertical GREEN

Development of vertical vegetation systems for summergreen shading of glass facades of food retail and commercial areas. GLASGrün generates quantitative data on energy and microclimate balance and qualitative data on user perception. The results are guidelines for scalable and transferable constructive solutions with maintenance and management plans.

Klimaneutrale Stadt

GREEN Stone: development of a cement-free concrete with recycled content for applications in landscaping

The Green Stone project aims to develop geopolymer concrete with recycled mate­rials in order to reduce the consumption of non-renewable resources and replace the cement content with alternative binders. The landscaping industry in particular requires lightweight, durable and weather-resistant materials. The challenge lies in large-scale implementation, standardization and market acceptance. Research, pro­duction and economic efficiency play a central role in this. Laboratory and field trials, prototype tests and economic and ecological analyses are carried out in seven stages. The goal is a sustainable, high-performance concrete with a low carbon footprint and high market potential.

Stadt der Zukunft

GREENsChOOLENERGY - Development and practical implementation of sustainable solutions for urban hotspots in combination with greening / PV / water

Use of the synergetic effects in the construction of photovoltaic, greening and irrigation systems at the location of HTL1 Klagenfurt Lastenstraße, to optimize the yield of experimental photovoltaic elements and at the same time reduce urban heat islands.

Stadt der Zukunft

GREeNvaluation - Real-time monitoring and performance evaluation

The aim of the project was the development of the GREeNvaluation toolkit, as a precursor to the implementation of green and liveable cities. The visualization and accounting (cost / benefit) of green infrastructure services makes the benefits more tangible and understandable. The GREeNvaluation toolkit aims to create awareness far beyond the target areas by means of target group-specific communication formats.

Stadt der Zukunft

GameOpSys - Gamification for optimizing the energy consumption of buildings and higher-level systems

The central goal is the development of a mobile application that enables the energy optimization and planning of buildings, neighborhoods and higher-level energy systems through the participation of the user and the user as a new source of data and information. The development of the application is strongly transdisciplinary and integrates mathematical methods of simulation and optimization as well as psychological aspects of user behavior in order to develop new business models and open up new markets.