There are 25 results.
Conventional cooling has adverse effects on environment (eg. ozone depletion, global warming). One option for environmentally compatible cooling systems for near ambient temperatures (-10 to -50°C) is the Stirling cooler with environmental friendly process.
Evaluation of requirements and framework conditions for the implementation and the operation of a Contracting Platform for SME´s in Austria for the cost efficient identification and realisation of energy efficiency measures.
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.
Development of methods and procedures to automate the operative production control and scheduling considering the aspects of sustainability
The production order doesn't only influence logistic and operational ratios, but also shows effects on the environment as well as ergonomics and the staff's psychology. Aim of the project was to develop a method to optimize the job order planning in consideration of an integrated evaluation in terms of sustainable economic activity.
Research on the influence of collector hydraulics, piping and the arrangement of plant components on the stagnation behaviour of thermal solar systems.
Windings of rotating machines or electrical generators (e. g. wind and water power generators) are impregnated with resin. A new technology using the heating effect of current is investigated. The high efficiency of heating with the joule effect results in quick heating of stator leading to fast gelling of the resin, which implies low emission.
The objective of this task within the IEA DSM programme is to facilitate the use of performance contracts and other energy service company (ESCO) contracts. In this scenario, the ESCO has taken on the project's performance risk by guaranteeing a specified level of energy savings. Its compensation for this risk is directly tied to achieving savings. The financing for such a project could come from the ESCO, the equipment supplier or a third-party company.
Concept development for the implementation of efficient energy services as part of grid connected energy supply to increase energy end-use efficiency.
A feasibility study of innovative absorption heat pump processes for strategic orientation and further development of heat pumping technology and its applications.
Development of a technical process to separate lactic acid from Brown Juice. Lactic acid is a promising chemical commodity which may be produced from silage juice at low costs and in an environmentally friendly way for subsequent synthesis of valuable products.
Overview of the current status of the fluidized bed technology worldwide in regards to energy technology.
International cooperation aiming at widening the use of compact heat exchangers in heat pumping equipment. The goal of this project is to identify compact heat exchangers, either existing or under development, that may be applied in heat pumping equipment such as compression or absorption heat pumps.
The project aims at the development of integration methods for solar heat into industrial production process with batch operations as typical for SMEs
Pollen for medical applications can be sorted by special machines. An integrated database and a spectrometric calibration allow a precise separation of the species with an identification of the plant species.
The production of bioethanol in Bruck/Leitha in addition to the production of heat, power and valuable by-products from biomass will be optimized by a new process simulation tool under the target of maximum usage of waste and low temperature heat and optimal source and product usage.
PROMISE - Production with solar energy. Study on the potential of thermal solar energy systems in trade and industry depending on the production processes
Documentation of realized plants for the use of thermal solar energy in trade and industry companies. Identification of production processes and branches, which have a demand for low-temperature heat. Determine the potential of solarthermal systems to provide low-temperature heat. Case studies for branches and processes with the highest mid-term potential for realization of a solar plant.
Raise in efficiency due to optimized waste heat management in heat intensive processes of the metal-working industry
This project drives at optimizing the energy input at the manufacturing process of oil tempered spring steel. This aim is met by investigating different options of waste heat recovery from industrial furnaces and heat insulation of heat treatment bathes. Besides, options of lead removal from anthracite will be listed.
To the frequent uses of refrigerating plants in hotel and catering industry was not paid a lot of attention in the way of energy efficiency so far. We are talking about plug-in cooling units and custom-made cooling equipment. Aim of the project: finding out the manner and amount of refrigeration usage, as well as the estimation of energy savings potential and measures, especially for custom-made cooling equipment.
Shutdown factory - Central control and communication system and overall concept for a reduction of energy cost and optimization of resources during the stand-by-mode of industry facilities
Development of solutions to reduce the energy cost during the stand-by-mode of industry facilities. Focus areas: innovative control and communication system for the problem of the shut down and start up, entire concept on energy savings cost during the stand-by-mode, creating awareness concerning the problem in the industry
Solar thermal cooling system consisting of a parabolic trough collector field and a steam jet ejector chiller
A solar thermal cooling system consisting of a parabolic trough collector field and a steam jet ejector chiller has been developed. The necessary components were built and tested and finally put together to get an operating pilot plant at the test facility.