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Climate neutral Wiener Neustadt 2040
Wiener Neustadt wants to develop its own vision and implementation strategy for climate neutrality by 2040 and develop it in four steps.
Climate neutrality roadmap Feldkirch
Feldkirch has already implemented important measures in the field of climate and energy policy. The city is a member of a KEM and KLAR region and has been a very active e5-municipality since 2005.
Climate neutrality roadmap St. Veit/Glan
St. Veit/Glan aims at advancing to a beacon for other small Austrian towns by developing strategies, measures and for building the capacity, necessary for achieving climate neutrality by 2040.
Climate pioneer city Salzburg
The aim is to draw up a master plan to achieve climate neutrality for the city of Salzburg by 2040. Together with stakeholders, development and urban planning processes can be analyzed, targets set and the necessary resolutions obtained. The exchange with the other pioneering cities is intended to ensure the broadest possible exchange of knowledge and to exploit synergies.
Climate prevention model Feldbach 1.0
In Austria, Feldbach counts to the active players in the field of climate policy. It has already implemented numerous projects in the areas of climate protection and energy.
Cool Windows - Windows with shading optimising the trade-off between summery overheating, wintery heat protection and adequate illumination
Windows with their associated components such as sun and glare protection are optimised as a holistic building equipment unit regarding different seasonal requirements in light of the climate crisis. The results serve as a basis for new developments in the window and shading technology in order to provide summery and wintery heat protection as well as adequate natural illumination over the year.
CoolAIR - Predictive control of natural nighttime ventilation and daylight-optimized shading for passive building cooling
Natural nighttime ventilation and daylight-optimized shadowing are high potential approaches to efficiently and economical cool buildings. Nevertheless, the full potential cannot be acquired, since, if at all, such behavior is manually initiated by users. Goal of this project is the development of an automated, self-learning system that can assess the full cooling capabilities and establish an alternative to conventional air conditioning systems.
Cooling LEC - Energy-flexible buildings by controlling cooling systems via unidirectional communication in local energy communities
As a result of climate change and the rise in temperature, especially due to the increase in active cooling systems, especially at low-voltage level, new challenges are being posed to the electricity system (in particular to the distribution network). Due to the high electrical input of active cooling units and the high density of plants, which are sometimes operated uncoordinated and at unfavorable times, leads to peak consumption in the system. The project Cooling LEC therefore has as its overall objective the development and demonstration of a central control / intelligence of decentralized active cooling systems by further developing the unidirectional communication of ripple control systems to create energy-flexible buildings in the sense of the new approach of "Local Energy Communities" by creating a "special tariff". Ripple control systems have been established for many decades and are available and proven by all energy suppliers. The upscaling potential is very big.
Cooperative Living Volkersdorf (KooWo - Volkersdorf) - sufficiency, space and energy efficiency in the quarter
The jointly planned demonstration project "KooWo" in Volkersdorf aims at reaching sufficiency as well as energy and CO2 reductions in a holistic way. System boundaries are shifted in order not to look only at energy consumption in buildings, relating to unit of floor space, but to consider all use of resources and relating it to persons and social communities.
Counterintuitive Building Types - Innovation Potentials for Sustainable Transformation of Commercial and Retail Locations
Selected commercial retail and properties provide existing resources for this project’s case studies that will convert and further develop them towards more positive energy, use, and life cycle balances. The currently underperforming properties will be transformed into more active and attractive places of higher experiential density and environmental relevance through multiplication of space and uses in the interior and exterior areas, demonstrating opportunities for more sustainable development of these understudied building typologies.
DALEC - Day- and Artificial Light with Energy Calculation
In the course of DALEC an online concept evaluation tool for architects, building engineers, lighting designers and building owners was developed. Although easy to use, the software accounts for the complex thermal and light processes in buildings and allows a simple evaluation of heating, cooling and electric lighting loads. Not only energy, but also user behavior were considered (e.g. in terms of glare protection) and visual and thermal comfort were evaluated. This novel and innovative, holistic approach makes sustainable and energy efficient building design possible for new buildings as well as refurbishment.
DDM Feldkirchen
Demonstration of digitalization measures in heating networks using the example of Feldkirchen district heating network
DIM4Energy - Digital Information Models for the Planning and Optimization of Buildings and Urban Energy Infrastructure
Digital information models (DIM) are playing an increasingly important role in urban planning and decision-making processes, from individual buildings (BIM) to urban information models (UIM). For the planning and optimal operation of plus-energy neighborhoods, valuable information could be obtained from these existing models, provided the appropriate data sources and associated software tools are properly linked.
DREI x NULL = NULL - Research project on climate-neutral construction in all life cycle phases based on three demonstration buildings
The aim of the F&E project is the realization of three different residential buildings, which are all climate-neutral in the life cycle phases of construction, operation and dismantling. The aim is to create exemplary showcase projects for the future residential construction sector.
DRoB - Drones and robotics for efficient monitoring and management of green facades or roofs
Strategic transdisciplinary networking of experts for the analysis of innovative monitoring and management systems for green facades and roofs. The aim is to demonstrate the potential of different UAV sensors for vegetation monitoring and robots for maintenance measurements of green façades.
DW² - Thermal improvements on diaphragm walls
New materials and installation methods for diaphragm walls will be investigated in laboratory and field tests in order to improve the thermal properties of the construction elements. Additional numerical and ecological aspects are considered to ensure an energetic enhancement of underground constructions such as underground garages or thermal energy storages.
DeLight Monitoring - Demo light Impact-Monitoring and metrological investigation of energy-efficient buildings
The Project consists of the metrological examination of eleven innovative buildings in terms of energy consumption and user comfort. In addition, building constructors and operators as well as the public are sensitized to the subject of energy-related optimization of building operation. Also, the potentials of energy-related optimization of building operation are shown.
Decarb Alt Erlaa - Transformation of Alt Erlaa residential park into a climate neutral district
Exploration of a transformation of the Alt Erlaa residential park into a climate neutral district based on systematic potential analyses regarding structural measures, building technology measures and a sociological monitoring of the transformation process. The result of the exploratory study serves as a starting point for implementing the measures in a follow-up project.
DiCYCLE - Reconsidering digital deconstruction, reuse and recycle processes using BIM and Blockchain
DiCYCLE aims at identifying, analysing and mapping current End-of-Life processes in the building industry, as well as optimizing those for digitalization, using BIM, Blockchain and Smart Contracts. The goal is to enable sustainable digital planning, construction and deconstruction workflows for reuse and recycling of building materials and components along the life cycle.
DieWärmePioniere - Participatory climate transformation roadmap as basis for a demo district in the gas-supplied Kahlenbergerdorf
Development of a transformation roadmap for the decarbonization of a neighborhood and implementation of a subarea. Securing acceptance of the project and raising awareness through an active participation process of the population and the establishment of an energy community for heat supply.