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Energiesysteme der Zukunft

"Leitbilder" in "energy regions" or how to co-ordinate technical change

In three Austrian regions, which call themselves "energy regions", the processes leading to the formulation of common visions or "leitbilder" is analysed and the impact is assessed such "leitbilder" can have on technical change on the regional scale. On this basis and with help of external consulters adapted communication and network strategies are developed and examined with regard to transferable elements.

Energiesysteme der Zukunft

Agriculture 2020

Agriculture will become an important supplier of sustainable energy services for society. However, this sector can only fulfil this role if it operates on the base of sustainable energy provision itself. The project will determine the necessary measures to achieve this state for a concrete regional setting (eastern Styria) by the year 2020.

Energiesysteme der Zukunft

BioShip - Potentials of Inland Waterways in Securing the Supply of the Austrian Bio-based Energy Industry

BioShip analyses the potentials to optimise and secure the supply chains of the austrian bio-energy plants (forest fuel, biofuel and biogas) with inland water navigation as an environmental friendly way of transport

Energiesysteme der Zukunft

Biomass-Logistic-Centers

By establishing regionally best situated logistic centers it shall be guaranteed that in all of Styria transport and processing costs will be reduced and that a continual supply of biomass firewood of constant quality is ensured.

Energiesysteme der Zukunft

City Cooling - Intelligent district cooling implementation, Vienna

Development of an intelligent district cooling concept and alternative solutions for heat rejection from central absorption chillers at the example of the neighbourhood TownTown in Vienna.

Energiesysteme der Zukunft

Construction of a local biogas grid in Güssing - Technical and economical concept for the implementation

Decentralized energy supply systems are a very important contribution for the use of regional potentials as these technical solutions are always fitted to specific conditions. Local biogas grids should complement already existing technologies and be analyzed accordingly.

Energiesysteme der Zukunft

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.

Energiesysteme der Zukunft

Distributed generation and renewables - Power Quality

The project will demonstrate how the integration of power electronics equipment in Distributed Generation (DG) units can actively improve the stability and quality of supply of electric power distribution networks in order to increase the penetration of DG and Renewable Energy Sources.

Energiesysteme der Zukunft

Energy centre for the thermal conversion of biogenous raw materials and residues of a region to produce heat, electricity, SNG and liquid biofuels II

Production of synthesis gas from biological fuels and residues using steam blown gasification. This synthesis gas will be used for polygeneration especially for heat, power, gaseous and/or liquid fuels.

Energiesysteme der Zukunft

Energy park Micheldorf-Hirt

Co-operative merging of the energy supply for the Region of Micheldorf within an operating scheme and supply of energy produced through renewable resources. Sustainable, autarkic, economic energy park. Energy supply by renewable resources for the building of the energy autarkic region Micheldorf-Hirt

Energiesysteme der Zukunft

Energy system - Industrial region

Analysis of success factors, restrictions and risks on the development and implementation process caused by the system integration of renewable energy technology in industrial regions with higher energy demand.

Energiesysteme der Zukunft

Energy-self-sufficient district Güssing

Development of a concept that shows the possibility of changing the energy supply of a district from fossil to 100% renewable energy carrier

Energiesysteme der Zukunft

Fair market conditions for virtual power plants

Analysis of technical, economical and regulatory conditions to get fair terms under competition in the liberalised market for virtual power plants on renewable energy basis.

Energiesysteme der Zukunft

Feed-in and system integration of biogas in existing gas grids

Method for assessment of technological aspects of biogas supply to existing gas grids. Definition of characteristic numbers for quantitative an qualitative analysis. Aspects of systems integration.

Energiesysteme der Zukunft

Guideline for logistic systems and resource management for renewable resources in Burgenland

The project on hand is applied in the Austrian federal state Burgenland. It investigates possibilities to cover the future biomass demand of the county with resources from the county.

Energiesysteme der Zukunft

Heat in containers

Storage of industrial waste heat in latent heat storage systems (common transport containers). Use of the heat in commercial enterprises and public or private buildings with integration of conventional energy suppliers. Technical and financial feasibility study.

Energiesysteme der Zukunft

Hydrogen from renewables in Austria - an energy carrier of the future?

Renewable hydrogen in Austria: Future perspectives for the production and use of hydrogen from renewable energy in Austria with the identification of projects to demonstrate the role of renewable hydrogen in an efficient and flexible energy system.

Energiesysteme der Zukunft

Indicators of social sustainability for energy regions of the future (SONAH)

Set of social sustainability indicators, oriented at practice needs, and concept for their use in energy strategy processes, regional energy concepts, planning and operation of plants generating renewable energy

Energiesysteme der Zukunft

Integral Resource Optimization Network Study

A robust, distributed control network for optimizing the resource "electrical energy". Consumers, producers and storages network in a self-organized way and coordinate autonomously their usage of electrical energy. Load-shaping, transparent flow of information, system-wide increase in efficiency.

Energiesysteme der Zukunft

Integration by Cooperation

The aim of the project was to assess which forms and conditions of interaction can foster the integration of higher shares of distributed generation into the Austrian electricity grid.