Suchergebnisse

Stadt der Zukunft

Reallabor Weizplus - Reallabor klimaneutrale Region Weizplus

Klärung relevanter Fragen für die potenzielle Errichtung eines Reallabors in der Region Weizplus, das eine 100% Versorgung der Region mit Erneuerbaren Energien bis 2030 zum Ziel hat. Der inhaltlich-technologische Fokus der Aktivitäten des zukünftigen Reallabors liegt auf allen energierelevanten Sektoren (Wärme, Strom, Kälte) angewandt auf die Schwerpunkte Energieeffizienz und Ersatz fossiler Energie in Gebäuden, in Gewerbe und Industrie sowie Mobilität.

Stadt der Zukunft

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.

Stadt der Zukunft

# Murau : Real-World Laboratory of energy transition for inner-alpine regions

Inner-alpine regions are rich in the natural resources water, sun, wind and biomass. This study investigated how the Murau region can become a stable and fail-safe, renewable 100% region and how it is possible to supply the energy-hungry conurbations as a needs-based energy export region.

Stadt der Zukunft

TWIN - Digital twins for sustainable buildings

Digital building twins have hardly been used in practice due to an often unfavourable cost-benefit ratio. The aim of the TWIN project is to bring together use cases of digital building twins with a high ecological and economic impact in order to prepare application scenarios with great implementation potential.

Stadt der Zukunft

OctoAI: The next generation of high-performance edge AI for smart buildings

Current IoT (Internet of Things) solutions for buildings depend almost exclusively on cloud infrastructure and cloud-based services. In the OctoAI project, we are developing the next generation of high-performance Edge AI (Artificial Intelligence) for smart buildings. In OctoAI, we combine the concept of edge AI with user-centric energy services and test two edge-ready applications.

Stadt der Zukunft

Beyond - Virtual Reality enabled energy services for smart energy systems

The Beyond project addressed two different energy services through the interaction of various technologies: state-of-the-art virtual reality (VR), the Internet of Things (IoT), energy simulation and machine learning (ML). Energy service 1 immerses VR users in energy-efficient and sustainable building design through an educational VR game, while energy service 2 improves the maintenance of building systems, particularly heating, ventilation and air conditioning (HVAC) systems, through the application of ML models for predictive maintenance.

Stadt der Zukunft

VITALITY District - Optimized energy concepts in the early planning phase of resilient, energy-efficient neighbourhoods

The aim of the VITALITY District project is to coordinate the total (electrical and thermal) load and generation profile in the design phase of urban areas and neighbourhoods in order to optimize the energy concept of energy-efficient districts. Hence smart city indicators in detailed level (buildings, individual technologies, public spaces) as well as models, principles and catalogs of criteria for energy-optimized urban neighbourhoods were created. The results were presented in compact form on the district level in order to serve as input for future urban planning projects.

Stadt der Zukunft

Vilipa - Visible light based Person and Group Detection in existing buildings

Zur Reduktion des Energieverbrauchs von Gebäuden können Belegungserkennungssysteme einen großen Beitrag leisten. Dieses Projekt zeigt die Machbarkeit des Erkennens von Personen anhand der Reflexion von sichtbarem Licht, hervorgerufen durch die Person selbst, demonstriert, wobei die bestehende Beleuchtungsinfrastruktur zur Personenerkennung ohne Datenschutzbedenken eingesetzt werden kann. Der realisierte Ansatz ist sowohl kostengünstig als auch unaufwändig hinsichtlich der Installationskosten.

Stadt der Zukunft

KityVR - Artificial intelligence techniques to implement CityGML models and VR visualization

The KityVR project deals with key research aspects at the interface between 3D city models and virtual reality. It addresses questions such as how virtual reality can be used for visualization in the field of 3D city models and how machine learning and statistical methods can be used to enrich or complete energy-related data sets.

Stadt der Zukunft

Reallabor 100% renewable energy Waldviertel

Under the motto "Always one step ahead", the aim is to develop a content-related and economic implementation concept for a "Reallabor 100% erneuerbare Energie Waldviertel".

Stadt der Zukunft

REal - The laboratory for Integrated Regional Renewable Energy Systems

In the REal project, a holistic, scalable and user-friendly concept was created, whereby sector-coupled, municipal energy systems with 100% renewable energy can be implemented, considering all necessary aspects from planning to operation, reducing design costs and accelerating an Austria-wide implementation.

Stadt der Zukunft

ExTra - ExergyTrafos for heating and air conditioning through district heating

As a contribution to the reduction of CO2 emissions, the project aims at upgrading existing heating networks by adding new devices, so-called exergy trafos, to the heat-exchanging transfer stations. These are driven by district heat and provide heating and cooling, as well as a reduced return temperature, as a service.

Stadt der Zukunft

BIMpeco - Environmentally relevant product data in collaborative BIM environments

Construction products can pose a risk to the environment and health due to their pollutant content or releases. In the BIMpeco project, workflows and data structures for digital information management of this environmentally relevant product data are developed. For this purpose, the new ISO standards ISO 23387 and ISO 19650-1 are tested and synchronized with established process flows. The project results will be made available on an open-source basis and can be integrated into any Common Data Environment (CDE) that complies with the standards mentioned. The BIMpeco project is the first to lay the foundations for product information management of environmentally relevant properties in the CDE, covering the entire lifecycle and supply chain.

Stadt der Zukunft

GLASGrün - Regulation of climate, energy demand and comfort in GLASS buildings through structurally integrated vertical GREEN

Development of vertical vegetation systems for summergreen shading of glass facades of food retail and commercial areas. GLASGrün generates quantitative data on energy and microclimate balance and qualitative data on user perception. The results are guidelines for scalable and transferable constructive solutions with maintenance and management plans.

Stadt der Zukunft

GreenDeal4Real - Improving the thermal comfort in mixed-use areas through cost-effective green infrastructure

In Vienna's 22nd district, a mixed-use construction project was used as an experimental space to simulate the effects of green structures and analyse their implementation in a real planning environment. The simulations, the planning laboratory and close cooperation with the developer made it possible to take microclimatic effects into account as early as the planning stage and to optimally compensate for the negative effects of additional sealing through greening.

Stadt der Zukunft

Flucco+ - Flexibler NutzerInnenkomfort in viertelstündlich CO2-neutralen Plusenergie­quartieren

Ziel des Projekts ist die Verbesserung der Planungsgrundlagen für die Errichtung und den Betrieb energieflexibler Bestands- und Neubauten in drei konkreten Bereichen. Erstens der Weiterentwicklung bestehender Modelle thermischen Komforts für dynamische Situationen, zweitens der Quantifizierung zukünftiger Netzdienlichkeit und drittens der holistischen Erprobung des entwickelten Komfort- und CO2-Modells an drei potentiellen Plusenergiequartieren unter Berücksichtigung der Ökobilanz sowie der Lebenszykluskosten.

Stadt der Zukunft

Flucco+ - Flexible user comfort in quarter-hourly CO2-neutral Positive Energy Districts (PED)

The aim of the project is to improve the planning basis for the construction and operation of energy flexible buildings in three specific areas. First the further development of existing models of thermal comfort for dynamic situations, second the quantification of future energy grid usefulness and third the holistic testing of the developed comfort and CO2 model at three potential positive energy districts (PED), taking into account the ecological assessment as well as the life cycle costs.

Stadt der Zukunft

SmartControl - Standardisierte und smarte Steuerung von kommunalen Energiesystemen

Das Ziel ist die Entwicklung eines standardisierten und einfach implementierbaren Verfahrens für die Kommunikation, Überwachung und Steuerung von dezentralen Technologien innerhalb von kommunalen Energiegemeinschaften. Dazu werden innovative Schnittstellen und selbstlernende Algorithmen entwickelt, welche sicherstellen, dass das Konzept auf Kommunen bzw. Quartiere - ohne großen Daten- und Messaufwand - übertragen werden kann.

Stadt der Zukunft

SmartControl - Standardized and smart control of municipal energy systems

The aim of the project is to develop a standardized and easy-to-implement procedure for communication, monitoring and control of decentralized technologies within municipal energy communities. Therefore, innovative interfaces and self-learning algorithms will be developed, which will ensure that the concept can be transferred to municipalities or neighborhoods without a great deal of data and measurement effort.

Stadt der Zukunft

BIOCOOL - Bio-inspirierte Oberflächen zur Verdunstungskühlung von Gebäudehüllen

Das Projekt Biocool ist eine Sondierung zur Übertragung von morphologischen Prinzipien von Blättern von Laubbäumen, die für thermische Eigenschaften und Verdunstungseffizienz optimiert sind, in parametrisches Design architektonischer, formoptimierter Oberflächen aus Keramik zur Klimatisierung von Gebäudehüllen. Diese Studie bereitet den Weg für ein industrielles Forschungsprojekt.