Suchergebnisse für "Factsheet: Energietechnologien gestalten, die für alle sinnvoll und nutzbar sind"
urban pv+geotherm - Innovative concepts for the supply of large volume buildings/ quarters with PV and geothermal energy
The use of renewable energies in inner city locations is mostly linked to higher costs andconsidered as problematic. The aim of this project was to optimize (cost and energy) heating (and where required, cooling) using geothermic and photovoltaic for an urban, densely-built development area. With the project´s findings it will be easier to ecologically and economically plan the use of renewable energies especially in urban areas.
Innovation and Sustainability in the Construction and Housing Sector
Concepts for enhancing in-house innovation in construction; development of performance and benchmarking indicators in the housing sector. Economic proposals to improve legal and structural business environment and to increase sustainable and energy efficient construction and renovation activities.
GreenDeal4Real - Improving the thermal comfort in mixed-use areas through cost-effective green infrastructure
The aim of the project is to avoid overheating in summer by using innovative greening measures in the mixed residential and commercial area Aspernstraße/Lavaterstraße. The development of a guideline should facilitate the realisation of climate-sensitive projects from strategy to actual implementation and ensure a high degree of transferability to other areas.
Plus Energy Melk - Path for the realization of Plus-Energy-Districs in Melk
The city of Melk has set itself the goal of playing a pioneering role in renewable energy supply and climate protection. In this context, an initiative aimed at implementing Positive Energy Districts. Two urban development projects are currently underway to examine under which framework conditions, technical and organisational solutions Positive Energy Districts can be realised. A proactive participation process aims at informing developers and investors as well as other stakeholders about the realization of PlusEnergy concepts.
KELVIN - Reducing the urban heat island effect via improving the reflective properties of buildings and urban areas
The aim of this project was to estimate the potential to reduce urban heat islands via low-tech measures such as the variation of the surface albedo, using the City of Vienna as an example. The project has also assessed the energy savings and greenhouse gas emission reductions due to the decreased energy demand for cooling as a result of such measures.
Direct Supply with Cold, Heat, Electricity and further Added Values Using Renewable Fuel for Stationary Fuel Cells
Fuel cells can use local resources and provide regional energy support if optimized. BIO-VISION leads to a demo-project.
Build4Climate - Demonstration building with a climate room concept at the Innovation Quarter Lavanttal in Carinthia
A new train station is being built near the exit portal of the future Koralm railway tunnel in Carinthia, in connection with a CO2-neutral technology park. The innovative entrance building of the newly developed area will be implemented as a frontrunner with a 'climate room' concept based on thermal component activation and extensive use of renewable energy sources.
Digital Twin / Building Tracker - Coupling of building simulation with a physical building in real time
The goal of the project ist o couple an office building during operation with its virtual twin, the "building tracker", which will be developed and applied for the first time within the project. Thanks to coupling of monitoring and simulation, innovative building energy management of nearly zero-energy building is possible.
Constructed Wetlands for Industrial Waste Water Treatment and Water Re-Use
Measures to achieve the aim of sustainable wastewater treatment, design and building of constructed wetlands for different types of industrial wastewater for selected enterprises in the food industry, monitoring in order to optimise systems performances
"Green Biorefinery - Utilitsation of Grass Fibres"
Basic properties of grass fibres from a green biorefinery will be investigated in order to have a sound base for comparison of grass fibres with other renewable fibres. Selected prototype-products with these grass fibres as main raw material source (e.g. insulation materials, gardening material, animal nutrition) will be developed, tested and evaluated whether they are technologically as well as economically feasible.
Solarenergie Urban - Analysis and evaluation of the economic, energetic and architectural quality of urban solar energy buildings
This project developed energetic and economic optimised planning criteria for multi storey residential buildings for the integration of renewable energy systems in the building shell. The field of new construction and refurbishment had been investigated.
FABRIKregio - Development, test and spreading of models for the self-evaluation of sustainability at enterprise level under special consideration of regional successful factors
The project provides enterprises with a new self-evaluation model, which serves the purpose to support sustainable decisions. Focal point and innovation are: more active participation of the employees and better consideration of regional economic factors for success.
SPIDER - Subtraction as a measure to Preserve and Insulate historic Developments by Electric Robots
The purpose of this exploration is to unlock the potential of autonomous, data-driven robots that achieve improvements of the thermal building performance through air entrapments in a continuous process.
EMA - Environmental Management Accounting - Pilot-testing
Training kit for environmental management accounting and investment appraisal
Using buildings as energy storage - Monitoring project: Detached house H and detached house F Energy source wind power – Energy source solar power
Monitoring and comparison of performance of thermally activated building components in two similarly built, inhabited detached houses with different energy sources (wind and solar power). The functionality of energy supply through wind power or solar energy will be investigated as well as the verification of the practicability of self-regulating system control due to building temperature behaviour. The results provide an insight into the calculation assumptions, system control and feasibility of the smart grid technology.
Poly2Facade - Innovative thermal self-regulating solar facades by means of functional polymers
The overall objective of the present project is to develop and implement an optimal overheating protection system based on polymeric materials. The aim is to reduce maximum room temperatures in buildings caused by facade integrated solar-thermal collectors in stagnation.
Multi-Activ-Facade
Multi-Activ-Facade is a pre-manufactured, multifunctional panellised façade, which incorporates ventilation with heat recovery, passive house windows and photovoltaic for smart self-supply within retrofitting measures. The specific challenge is the application within social housing.
SüdSan - Socially acceptable, climate-compatible refurbishment of two multi-family-houses as a model for the refurbishment of the Südtiroler-Siedlung Bludenz
Planning, energetic-economic optimisation, construction and monitoring of the costs, comfort and energetic performance of two socially acceptable and climate-target-compatible refurbished smaller apartment buildings in the Südtiroler-Siedlung Bludenz.
Safety and Authorization of Biomass Gasification Plants
Biomass gasification is a success promising technology for the combined heat and power production based on the utilization of domestic biomass. With this project a safety and commissioning guideline for the technology was created for the enhancement of the technology's market introduction.
PVReValue – Holistic recycling of photovoltaic modules
The PVReValue research project is pursuing a new approach to the holistic recycling of photovoltaic modules, based on an innovative multi-stage composite separation process that is being developed in the course of the project. The multi-stage separation process and the novel combination of modern treatment processes are expected to achieve a recycling rate of more than 95 wt.-%.