Suchergebnisse

Energiesysteme der Zukunft

ECO-MOVER - Development of an energy-optimized photovoltaic-system

The purpose of the project is the development of an ECO-Mover, an innovative photovoltaic-technology together with corresponding system components. The entire R&D process encloses the energetic optimisation of the photovoltaic technology as well as the development of essential components.

Energiesysteme der Zukunft

Applications of the synthesis gas from biomass gasification - polygeneration

Polygeneration based on biomass gasification offers a great variety of applications of the synthesis gas. A fundametnal study will be carried out to assess technical as well as economical and ecological possible routes to produce synthetic products.

Energiesysteme der Zukunft

Renewable energy in Austria: Modelling possible development trends until 2020

The project investigates possible economic, social and environmental effects of a sustainable energy policy. Within a participatory modelling process a sustainability model is used to simulate different energy scenarios (with a focus on renewable energy technologies) for Austria until 2020.

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

Direct feeding system for biogas plants

The aim of this project is to develop an energy- and cost-saving direct feeding system for biogas plants, which deals with differing types of substrates and sizes of plants. Furthermore it solves previous logistical problems.

Energiesysteme der Zukunft

FT-Biofuels in Austria

Development of a realistic concept for the production of Fischer-Tropsch-fuels from biomass in a size of about 200.000 to/a in Austria. Comprehensive evaluation of this concept with respect to available biomass resources, and economical and ecological benefits.

Energiesysteme der Zukunft

Regional acceptance of biogas power plants - suitability and availability of energy-plants

Development of an calculation tool for future biogas power plant operators and planners to check the regional acceptance of their power plants as well as possible energy-plants and their availability.

Energiesysteme der Zukunft

Valuation models for future energy clusters considering market, technology and policy uncertainty - Case Study Biomass

Market liberalization, technological change and increasing complexity of international policy processes (e .g. climate negotiations) necessitate new approaches to evaluating investments in an uncertainty and risk-augmented framework. This project developed valuation methods from financial theory - such as real options valuation and portfolio optimization - to quantify the relative competitiveness of bioenergy chains and total energy systems.

Energiesysteme der Zukunft

Multifunctional energy solutions in tourism

Multifunctional energy solutions for the tourism-region Alpendorf: Increasing energy efficiency, use of renewables, organisation measures considering existing cooperations.

Energiesysteme der Zukunft

Multifunctional Energy Centre Kötschach-Mauthen - model-system to achieve energy-self-sufficiency

Development of concepts for a multifunctional Energy Centre (biomass district heating und biogas polygeneration for the supply of heat, electricity, process heat, cooling and biofuels) and for a "Öko-Energietourismus" for the community of Kötschach-Mauthen on the way to energy-self-sufficiency

Energiesysteme der Zukunft

Multi-purpose apparatus for dedusting and ventilation of flue-gas from biomass-fired boilers

The multi-purpose apparatus is cheaper and requires less material and space. Less power consumption because of utilistion of the cyclone vortex in the induced draft fan.

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.

Internationale Energieagentur (IEA)

IEA ES Annex 50: Prefab Systems for Low Energy/High Comfort Building Renewal

Development of integrated concepts for multi-storey buildings, which enable renovations of buildings with high energy efficiency at good user acceptance during the realisation phase as well as afterwards (comfort, affordability). Relevant components: integrated solutions of roof and façade with high rate of pre-fabrication, the possibility of integrating the energy façade/roofs and energy distribution and supply.

Internationale Energieagentur (IEA)

IEA ES Task 43: Storage for renewables and flexibility through standardized use of building mass

Thermal building mass activation uses building masses to condition interior spaces, but can also function as energy storage through targeted overheating/undercooling. This storage potential can be used for local and grid-connected renewable thermal and electrical energy (Power2Heat). The project develops new content on the construction, control and business models of such storages and disseminates it as guidelines, data and on the basis of best-practice objects that have been implemented.

Internationale Energieagentur (IEA)

IEA ES Annex 39: Large Thermal Energy Storages for District Heating

Large-scale heat storage systems will play a central role in increasing the necessary flexibility of district heating networks and enable the further expansion of renewable energies. The main objective of the Annex is to determine the aspects that are important in planning, decision-making and implementing large thermal energy storages for integration into district heating systems and for industrial processes, given the boundary conditions for different locations and different system configurations.

Internationale Energieagentur (IEA)

IEA Energy Storage (ES)

The aim of the IEA Energy Storage (ES) Technology Programme is to enable integrated research, development, implementation and integration of energy storage technologies in order to optimise the energy efficiency of all types of energy systems and to promote the use of renewable energy sources instead of fossil fuels.

Internationale Energieagentur (IEA)

IEA ES Task 35: Flexible Sector Coupling through Energy Storage Implementation

Task 35 of the IEA Energy Storage TCP addressed Flexible Sector Coupling (FSC) through the implementation of energy storage and examined the role of energy storage in the context of the concept of sector coupling. The demand sectors include electricity, heating/cooling and mobility. FSC was defined, examples of FSC were described and studies on the use of FSC in local and the German national energy systems were carried out.

Internationale Energieagentur (IEA)

IEA ES Task 44: Power-to-Heat and Heat integrated Carnot Batteries for Zero-Carbon (industrial) heat and Power supply

The rise of renewable energy causes fluctuating energy production. The electrification of heat supply further challenges the electricity grid. Coupling electricity and heating with thermal storage helps to strengthen grid resilience and ensures stable energy supply. This project identifies and evaluates heat-integrated Carnot battery concepts to store thermal and electrical energy and supply electricity and thermal energy on demand.

Internationale Energieagentur (IEA)

IEA ES Task 41: Economics of Energy Storage

What is the value of energy storage and how can it be quantified? How can the benefits and value of energy storage be translated into promising business models? The Task will conduct a coordinated methodological assessment of the economic viability of energy storage (electrical, thermal, and chemical) in applications relevant to the energy system. This will be used to derive preferred conditions for energy storage configurations.

Internationale Energieagentur (IEA)

IEA ES Task 36: Carnot Batteries

Carnot Batteries are an emerging technology for the inexpensive and site-independent storage of electric energy at medium to large scale (> 1.000 MWh). The technology transforms electricity into thermal energy, stores it in inexpensive media such as water or molten salt and transforms the thermal energy back to electricity as required. Carnot Batteries have the potential to solve the global storage problem of renewable electricity in a more economic and ecologic way than conventional batteries.