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Energy Conversion and Hydrogen
- /en/research-topics/energy-conversion-and-hydrogen
fossil fuels to renewable energy, an even greater expansion of energy sources such as solar power or wind power is needed. Still, these technologies have to further increase their performance, reliability [...] coupling are needed. Here, hydrogen can act as a central bridge between the volatile power from solar or wind and the still dominant hydrocarbon-based energy system: Hydrogen-based technologies, such as large-scale
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High Voltage and High Power Laboratory
- /en/solutions/power-system-technologies-development-validation/high-voltage-and-high-power-laboratory-1
Energy Systems Testing and validation of inverters, transformers, and grid connection components for wind and solar power systems. Electromobility Testing of charging infrastructure, onboard power systems
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Sitemap
- /en/sitemap
2.0 Memphis 2.0 Plan4.Energy REFORMERS SECURES SYSPEQ T2LowEx TEMPO transpAIrent.energy TwinVECTOR Wind power potential in Bulgaria, Hungary and Romania Perception, Localisation & Mapping Control, Planning
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BI-FACE
- /en/research-topics/photovoltaics/projects/bi-face
to obtain the maximum possible performance on flat roofs. The construction demands with respect to wind load, stability, total weight (incl. ballast) and maximum allowed weight on a roof are directly influenced [...] project 1. New validated simulation tools for bifacial modules and systems, including simulation of the wind load 2. Modeled and validated standardization advice for characterization of bifacial modules 3. New [...] Outdoor performance qualification of the bifacial system in different European climate zones and wind and snow load conditions 5. Guidelines for flash tester upgrade at the module manufacturer’s site
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PV noise barrier
- /en/research-topics/hybrid-power-plants/projects/pv-noise-barrier
panels can be optimally aligned to the sun while simultaneously being secured against the expected wind and snow loads at each specific location. Laboratory setup during the development phase ©AIT Maximum
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Hydrogen in energy production
- /en/solutions/hydrogen/hydrogen-in-energy-production
future energy generation will be power plants utilizing renewable energy sources, primarily solar and wind power, or combinations thereof. So-called hybrid renewable power plants, also known as "Hybrid Power
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Dekarbonisierung der Pharmaindustrie
- /en/loesungen/dekarbonisierung-der-industrie-netzero/dekarbonisierung-der-pharmaindustrie
rung. Erneuerbare Energien und Speichersysteme Technisch-ökonomische Machbarkeitsstudien für PV-, Wind- und Geothermieprojekte. Batteriespeicher , Wärmespeicher und Kältespeicher zur Stabilisierung der
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Second Inspection
- /en/about-the-ait/translate-to-english-oekologisierung-seibersdorf/second-inspection
soil layers even during superficial drought. When the fruit ripens, shiny silver spikes sway in the wind. Grasses are an important food source for many insect species. The caterpillar of the checkerboard
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Zweite Begehung
- /en/ueber-das-ait/oekologisierung-seibersdorf/zweite-begehung-1
im Frühling aus dem Süden zu uns zurückkehrt. Diese weite Strecke bewältigt er, indem er sich den Wind zu Nutze macht. Chrysura cuprea - Kupfer-Goldwespe Diese äußerst farbprächtige Goldwespenart kommt
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Wasserstoff Brennstoffzelle
- /en/solutions/hydrogen/hydrogen-research-development/wasserstoff-brennstoffzelle
Hydrogen can be used as a storage medium for surplus electricity from renewable energy sources. When wind and solar power plants produce more energy than is consumed, the electricity can be used to electrolyze
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Hydrogen
- /en/solutions/hydrogen
systems, particularly in combination with other renewable energy systems such as photovoltaics (PV), wind energy, batteries, and power-to-heat (P2H). Existing regulatory frameworks are also considered to [...] optimization concepts for plant deployment to increase economic viability in combination with systems (PV, wind, battery, P2H) and existing regulatory frameworks Hydrogen as part of the global energy system The [...] enhancing energy security. Achieving climate neutrality requires the use of clean energy sources such as wind, solar, water, and geothermal power. Additionally, energy carriers like hydrogen and its derivatives
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Wind power potential in Bulgaria, Hungary and Romania
- /en/research-topics/flexibility-business-models/projects/wind-power-potential-in-bulgaria-hungary-and-romania
Publications ECF Study on Wind Potentials - Background Data ECF Study on Wind Potentials – Country Report Hungary ECF Study on Wind Potentials – Country Report Bulgaria ECF Study on Wind Potentials – Country [...] Wind power potential in Bulgaria, Hungary and Romania Study on the potential of wind energy in Bulgaria, Hungary and Romania This study sheds light on the applicable potentials for wind power development [...] stakeholders how wind power may contribute to meet the future demand for electricity in a carbon-neutral manner. For that purpose, a technical analysis of the future potential for wind power at the countryside
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100% renewable Pinzgau
- /en/research-topics/flexibility-business-models/projects/100-renewable-pinzgau
data regarding energy consumption and renewable energy sources were summarised and the future use of wind, PV, CHP, heating plants and heat pumps in heating networks was modelled and important measures were
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EnergAIze
- /en/research-topics/data-science-artificial-intelligence/projects/energaize
solar, wind, and hydropower. Previous studies have evaluated renewable energy availability based on observed and projected climate conditions, considering factors such as solar radiation, wind patterns [...] production has been examined, highlighting risks such as heatwaves with high energy demand but low wind speeds and reduced solar panel efficiency. However, the influence of extreme weather events on energy
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Climate resilience in cities and regions
- /en/solutions/sustainable-cities-regions-and-living-spaces/climate-resilience-in-cities-and-regions
goals related to enhancing urban environmental comfort. This includes improving thermal comfort and wind comfort in outdoor spaces during both summer and winter months. By using climate models that allow
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Wasserstoff Brennstoffzelle
- /en/solutions/hydrogen/hydrogen-research-development/wasserstoff-brennstoffzelle-1
enables the long-term storage of surplus energy from highly fluctuating renewable sources, such as wind power and photovoltaics, and makes it available when needed. Furthermore, hydrogen offers a promising
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Urban Planning
- /en/solutions/sustainable-cities-regions-and-living-spaces/urban-planning
factors such as water management (including runoff coefficients and retention potential), microclimate, wind comfort, and hours of sunlight on key reference dates in open spaces and on building façades are analysed
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Geothermal energy - utilisation of geothermal energy
- /en/research-topics/heating-and-cooling-networks-for-cities-and-industry/geothermal-energy-utilisation-of-geothermal-energy
energy compare to solar and wind energy? Geothermal energy is more reliable as it is independent of weather conditions, whereas solar and wind energy depend on the sun and wind. What is the global potential [...] expansion! The biggest unique selling point of geothermal energy compared to other forms of energy such as wind, solar energy or hydropower is its constant availability. Regardless of seasonal, climatic fluctuations [...] trend is the combination of geothermal energy with other renewable energy sources such as solar and wind power. Such hybrid systems can compensate for fluctuations and ensure a stable energy supply. In urban
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Grid-connected inverters
- /en/solutions/power-system-technologies/grid-connected-inverters
element for integrating renewable energy into our power grids. As a central component of photovoltaic or wind power systems, they serve as the interface to convert direct current (DC) into alternating current
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SOWINDIC
- /en/about-the-ait/center/center-for-vision-automation-control/complex-dynamical-systems/projects/sowindic
Anti-Icing Rotor Blade Heating In Wind Turbines“, International Wind Energy Conference Winterwind (2024). IGW Wind Industry Stakeholder Meeting: “A Smart Algorithm for Wind Turbine Controlling IEA (International [...] reliability and yield of wind turbines in winter. Icy wind turbines, as shown in the picture on the left, cause high costs. ©VERBUND To minimise future production losses caused by icing in wind turbines, the SOWINDIC [...] SOWINDIC Optimised control of wind turbine rotor blade heating systems Wind power provides around 11% of Austria's electricity. This makes it the country's second most important sustainable energy source
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