Suchergebnisse für "Factsheet: Energietechnologien gestalten, die für alle sinnvoll und nutzbar sind"

Haus der Zukunft

Connection of innovative strategies and technologies to a holistic, resources-friendly plus energy building (FUTUREbase)

On the basis of a construction project in Giefinggasse 4 in Vienna the combination of new, innovative strategies and technologies to an integrated, resources conserving plus energy building with high signaling and multiplication effect had been tested for feasibility. A regional, energetical bond between the buildings TECHbase, ENERGYbase and the Klima-Windkanal had been developed.

Stadt der Zukunft

Energy-Sponge: The Building as an Energy-Sponge - Electricity In - Heat Out

Innovative, dynamic control concepts had been developed which enable (air) heat pumps in combination with PV- or renewable grid electricity to use the building mass of a multi-familiy house as heat storage. User acceptance had been evaluated and possible business models had been developed.

Stadt der Zukunft

Energy-storage concrete: Thermal Component Activation

This planning guide provides information on the option of solely heating and cooling small-volume residential buildings by means of thermal component activation (TCA). Concrete instructions on the planning of residential buildings with thermally-activated ceilings are also provided. Felix Friembichler, Simon Handler, Klaus Krec, Harald Kuster
Herausgeber: BMVIT
Englisch, 122 Seiten

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Haus der Zukunft

smartEXT - extended application boundaries for proven passive house technology

The present study aims to explore the application options for compact units (ventilation devices including micro heat pumps, developed for passive houses) in low energy buildings. Compact ventilation units for heat recovery, heating and domestic hot water shall bear the basic heating load, whereas peak loads shall be covered by newly-developed auxiliary heating equipment combined with intelligent control algorithms. This allows increased energy efficiency as well as cost effectiveness together with higher living quality and lower ecological load.

Haus der Zukunft

CiQuSo - City Quarters with optimised solar hybrid heating and cooling systems

The project CiQuSo aimed to develop, evaluate and optimize concepts for solar energy systems to provide energy for buildings and cities. The applicability of the developed methods and concepts were shown as an example at Itzling, a part of Salzburg city.

Haus der Zukunft

Training Offensive: Comfort Ventilation

Specialised theoretical and practical training for designers/installers of comfort ventilation systems in residential buildings.

Haus der Zukunft

OPTISOL - Demonstration objects accompanied by measurement techniques for optimised and standardised solar systems in the construction of residential buildings for several families

The implementation of optimised solar heat supply systems in the construction of residential buildings for several families within the framework of an in-depth test.

Stadt der Zukunft

fit4power2heat

The integration of heat pumps can increase the cost effectiveness of existing heating networks and counter the high costs for the expansion of power grids at the same time. Aim of the project is to develop innovative business models for small and medium municipal heating networks with focus on synergies between heat and power market. Main focus is a heat pump pooling for several heat grids.

Haus der Zukunft

COP5+ - Further development of a heat- and cooling system with seasonal heat storage at the example of Central Europe´s biggest geothermal depth drilling field

The aim was to increase the overall energy efficiency of Plus-Energy-Houses by making the heat excess of summer available for use in winter. This was carried out by improvements of the technology seasonal heat storage to an intelligent overall system. The biggest geothermal depth drilling field in Central Europe has been established.

Haus der Zukunft

Buildings of highest energy-efficiency with integrated renewable energy development

For the future supply of energy services the combination of energy efficiency, energy storage and decentralized use of renewable energy in buildings offers itself. The project identified dynamic potentials of possible active and passive energy yields of construction units with use of renewable energy sources, pointed future solutions to energy-efficient and ecological design of building construction-units and united all results to a signpost: From today's passive house to the energy-plus-house of the future.

Stadt der Zukunft

Photonic Cooling – Efficient cooling of buildings through the use of photonic

Within the scope of the project a photonic cooling approach was investigated and evaluated in terms of feasibility and cost efficiency for building applications. In particular cost-efficient photonic surfaces and concepts were investigated which need to have a high reflectivity in of the incident solar radiation (>97%) and a high emission coefficient within the spectral range of 8 – 13 micrometer in order to enable the emission of heat into the sky.

Haus der Zukunft

User-friendly heating and ventilation systems for low energy and passivehouses

The goal of the research project is the evaluation of different heating and ventilation systems for passive- and low energy multi family and office buildings taking into account indoor climate, possible variation of user behaviour, final and primary energy demand, costs, space demand and fail save installation and operation.

Haus der Zukunft

DAKTRis - Dynamic operational behaviour of absorption chillers in Trigeneration Systems

In the present project an absorption chiller will be adapted to meet the specific requirements necessary to integrate it with the CHP unit. By means of hardware-in-the-loop measurements and dynamic system simulations, different system configurations and control strategies will be analysed under dynamic boundary conditions, optimized and evaluated.

Haus der Zukunft

Strategy development for (technical / economical feasibility of) energy autarcic buildings

Development of a strategy for energy autarcic buildings with appropriate Technology solutions.

Haus der Zukunft

Participation in TASK 25 of the Implementing Agreements on Solar Heating and Cooling of the International Energy Agency (IEA)

Participation in TASK 25 "Solar Assited Air Conditioning of Buildings". Description and Analys of the state of the art, development of a simulation tool, build up and measurement of demonstration plants.

Haus der Zukunft

Potential and concepts for waste water heat recovery in combination with solar collectors and heat pumps (WRGpot)

The objective of the project is to find possibilities for the reduction of heat demand for hot water preparation of low energy and passive house buildings, in order to advance a further step into the direction of plus-energy buildings.

Haus der Zukunft

MODESTORE - Modular High Energy Density Sorption Heat Storage

Seasonal storage of solar heat for use in low energy and passive houses (new buildings as well as old buildings).

Haus der Zukunft

Optimization of energy supply

The purpose of the work is to analyze the possibilities of the reduction of the energy demand of residential buildings by using telecommunication technologies such as mobile phones or Internet. Lowering room and water temperature during the absence of the inhabitants are of particular relevance.

Haus der Zukunft

Monitoring Sunhouse Eferding

In course of the monitoring project the effectiveness of the energy-technical system was checked on the basis of running measuring data. The data were evaluated and, if required, the arrangements and settings of the control system were adapted. Main result is that the energy balance could have been improved explicitly whilst the monitoring process.

Haus der Zukunft

Sunny Energy Building: ENERGYbase - Office building of tomorrow

Energybase is a showcase project in terms of energy efficiency and use of renewable energies realized by the Vienna business agency. With 7.500 sqm net floor area ENERGYbase provides space for innovative business and research and development on the field of green energy.