Suchergebnisse

Energiesysteme der Zukunft

Conception of innovative business models for active integration into network of decentraliced units for consumers and producers

Conception of economically and technically reasonable business models for network operators, producers as well as end users who have the chance to come into operation in active distribution networks until 2050.

Energiesysteme der Zukunft

Workshop: Technologies for solar cooling in tropical climates & guided tour of world´s largest solar cooling System

5. April 2013
Singapore, SG

Main topics of the Singapore workshop: Absorption chilling, Desiccant technologies, Heat rejection, Economics, financing

Energiesysteme der Zukunft

Production and upgrading of fermentation gas at the location Wals-Siezenheim to be feed into the natural gas distribution network

Production and multistage purification process of approx. 150 m³/ h biogas in Wals-Siezenheim. Prove the feasibility of trouble-free feeding of biogas into the natural gas grid of the Salzburg AG within an operation period of 3 years.

Energiesysteme der Zukunft

Smart Grid test run in Vorarlberg - Bytes not excavators inside the Biosphere Park Grosses Walsertal

Approaches to a resource-conserving and SMART integration of renewable energy sources in rural areas 1/2012

Herausgeber: BMVIT
Englisch, 6 Seiten

Downloads zur Publikation

Weitere Informationen

Energiesysteme der Zukunft

Establishing a logistics concept for an efficient collection of biogenous waste as input for energy recovery in biogas plants.

The basic organizational and technical conditions along with possible obstacles and critical success factors are investigated.

Fabrik der Zukunft

Transfer of results of the program "Factory of Tomorrow" into the target groups of energy managers and energy consultants

Transfer of results of the program "Factory of Tomorrow" with respect to energy efficiency and increased adoption of renewable energy technologies into the target groups of internal energy managers and external energy consultants. The transfer activities include carrying out a one-day-seminar twice and the preparation of freely available training materials.

Energiesysteme der Zukunft

Test stand method for the determination of system efficiency and emission factors of small-scale biomass combustion systems

Determination of key data with practical relevance of typical applications in only one test run. Monitoring of air pollutants and efficiency and continuous improvement of technology possible with test stand method.

Energiesysteme der Zukunft

Developing of a application for central visualisation of the energy and resource demand in a private household "ZENVIS"

The main focus of the research project ZENVIS is set on the analysis of the benefits provided by a "visualization device", which gathers the readings of energy and resource consumption (electricity, gas, water, heat energy and fuel consumption). This device ought to find its use in households and to allow the consumer to observe and to control his energy consumption.

Energiesysteme der Zukunft

Development of an innovative business model for large-scale solar thermal plants for industrial and commercial companies

The current project has the aim to develop an innovative business model for large-scale solar thermal plants (> 500 m² collector area) for industrial and commercial companies. This business model offers the energy customer a contractually binding solution in a time frame of 3 to 5 years; also, the energy delivery costs are lower compared to conventional sources.

Energiesysteme der Zukunft

Spatial models as a basis of decision making for the utilisation of regionally available energy potentials for a CO2 neutral satisfaction of the local heat demand

Analytical GIS-methods to model regionally available renewable energy potentials for the evaluation of measures to achieve a CO2-neutral heating and cooling supply.

Energiesysteme der Zukunft

Development of agitation systems in biogas plants in order to optimize mixing-behaviour and to reduce energy demand with the help of Computational Fluid Dynamics (CFD) simulation

The purpose of this project is the investigation of the mixing-behaviour and performance of the agitation systems in biogas plants, and to present them through Computational Fluid Dynamics (CFD) simulation. This EDP-tool can model and predict the actual fluid dynamics in a closed system. Thus it may help to plan optimal reactor geometries, position and combination of agitation systems as well as to minimize the energy requirements.

Energiesysteme der Zukunft

Use of thermal cooling technologies and optimal combination with other heat energy consumers to use during summer the available district heating based on renewable energy sources: example of the municipality of Mureck

Optimal use of heating energy from a biogas CHP in the municipality of Mureck through demand side measures; the multifunctional energy centre Mureck on the way towards thermal air-conditioning: Multi-Mukli