Suchergebnisse

Klimaneutrale Stadt

AI4FM - Artificial Intelligence for Facility Management

AI-based anomaly and fault detection in buildings. Digital twins of buildings with simulation models for testing and optimizing rule-based fault detection methods. Mining of the recorded time-series data from existing Building Management Systems to train Machine Learning models for fault detection.

Klimaneutrale Stadt

GreenGEO - Data-based integration of climate change adaptation measures into spatial planning

Green and blue infrastructure (GBI) is a key instrument in the fight against climate change. Nevertheless, deciding where and in what form it should be used most effectively remains a challenge in spatial planning practice. The development of a digital model that links location-specific climate risk data with suitable GBI measure proposals will make this much easier and more objective.

Klimaneutrale Stadt

ReAssuRe – risk management for re-use of construction components and building technology by non-destructive on-site testing procedures

Risk assessment and insurability is essential for the re-use of functional components in buildings. In the best case, properties of components can be examined before they are removed from the donor building. ReAssuRe identifies suitable on-site testing procedures and establishes a network for the quality assurance of re-use components.

Klimaneutrale Stadt

RCC2 - Life cycle assessment of heatable formwork for CO2-reduced and climate-neutral concrete

Experimental development of innovative formulations of CO2-reduced concrete and heated formwork to support early strength development in wintry temperatures.

Klimaneutrale Stadt

Topview - Methodology for the efficient use of remote sensing data for climate change adaptation and spatial energy planning

Development of integrated approaches to sustainable energy and heat planning in urban areas by utilising remote sensing data and geo-information-based technologies for decision-making in the planning of energy infrastructures and climate adaptation measures.

Klimaneutrale Stadt

ThermEcoFlow: Innovative technologies and methods for indoor air comfort and energy optimisation in thermal spa buildings

ThermEcoFlow aims to optimize the energy consumption of thermal spas facilities through improved simulation models and AI-supported control systems. By precisely modelling airflow, humidity loads, and evaporation, combined with AI-driven regula­tion, the project seeks to reduce energy consumption and CO₂ emissions in the long term while enhancing indoor comfort for visitors.

Klimaneutrale Stadt

MaBo - material saving in bored piles - a contribution to reducing CO2-emissions in the construction industry

Development of an innovative method for saving material in bored piles in order to reduce CO2 emissions in the construction industry. By optimizing the construction methods and using alternative materials, the sustainability of the foundation bodies is to be improved.

Stadt der Zukunft

StirliQ+ Component development of the expansion Stirling generator with supercritical fluid as working & lubrication medium

Technical research and further development of details or components of the novel StirliQ engine, which has the potential to overcome the technical hurdles of conventional Stirling engines. On the basis of simulations as well as a laboratory plant, a narrowing down of the process parameters with regard to a resilient pre-dimension of apparatus components is carried out.

Klimaneutrale Stadt

GREEN Stone: development of a cement-free concrete with recycled content for applications in landscaping

The Green Stone project aims to develop geopolymer concrete with recycled mate­rials in order to reduce the consumption of non-renewable resources and replace the cement content with alternative binders. The landscaping industry in particular requires lightweight, durable and weather-resistant materials.

Klimaneutrale Stadt

HeinrichBiCool - Climate-positive cooling and biodiversity through intensive greening of buildings

Using the example of an existing building of the University of Graz, currently affected by overheating, the project demonstrates what greening can achieve. Comprehensive monitoring of the indoor climate, building physics, energy requirements and biodiversity before and after the greening measures provides new scientific findings on the actual effectiveness of building greening.

Klimaneutrale Stadt

BIM.sustAIn - Artificial Intelligence to enhance sustainability in BIM projects

The construction sector faces growing challenges in meeting sustainability require­ments, particularly during early project phases where key decisions on materials, construction methods, and energy concepts are made. This project aims to leverage AI and BIM to optimize sustainability assessments by providing precise CO₂ balance forecasts and material suggestions. The innovative approach reduces manual effort and supports the implementation of climate-neutral construction, contributing significantly to Austria’s climate goals.

Klimaneutrale Stadt

FlexHP - AI-supported control models for optimising the flexibility of heat pumps to reduce the load on the electricity grid

Development of a new type of energy management system for heat pumps that enables methods for intelligent heat pump operation and thus maximises flexibility. This requires forecast-based models for control that utilise technologies such as machine learning.

Klimaneutrale Stadt

GreenFDT – Green Façade Digital Twin

In an interdisciplinary framework, the possibilities for optimizing the rear ventilation distance of façade greening elements and their potential impact on indoor and ur­ban climate are being investigated. The precise and comprehensive investigation of these relationships is made possible by the extensive deployment of sensors and measuring tools and furthermore the development and integration of a digital twin in a BIM model.

Klimaneutrale Stadt

ThermEcoFlow: Innovative Technologien & Metho­den für Raumluftkomfort und Energie­optimierung in Ther­mengebäuden

ThermEcoFlow setzt sich zum Ziel den Energieverbrauch von Thermen durch verbes­serte Simulationsmodelle und KI-gestützte Regelungen zu optimieren. Durch präzi­se­re Modellierung von Luftströmungen, Feuchtigkeitslasten und Verdunstungen und KI-gestützten Steuerungssystemen soll der Energieverbrauch und die CO2-Emissio­nen langfristig gesenkt und der Raumkomfort für Besucher:innen verbessert wer­den.

Klimaneutrale Stadt

BATTMON - Erhöhung der nutzbaren Ladekapazität, Lebensdauer und Sicherheit von Batteriespeichern im urbanen Raum

Ziel von BATTMON ist die Entwicklung einer verbesserten Zustandsbestimmung von Batteriespeichern für Anwendungen in Gebäuden und Quartieren. Dazu werden flächenhafte Foliensensoren zur ortsaufgelösten Messung von Temperatur und Druck entwickelt. Mit diesen Daten sollen der Ladezustand aber auch der Gesundheitszustand genauer abgeschätzt und Zellschäden frühzeitig erkannt werden, um die Brand- und Explosionsgefahr zu reduzieren.

Klimaneutrale Stadt

BIM.sustAIn - Artificial Intelligence to enhance sustainability in BIM projects

Die kontinuierlich steigenden Anforderungen an Nachhaltigkeit im Bausektor, insbe­sondere im Hinblick auf ESG-Kriterien, erfordern frühzeitige Bewertungen. Ziel des Projekts ist die Entwicklung KI-gestützter Tools zur automatisierten Nachhaltigkeits­analyse in frühen Bauphasen, mit Fokus auf CO₂-Emissionen und Material­vor­schlä­gen durch die Kombination von KI und BIM. Damit soll eine effiziente, skalier­bare Lösung zur Unterstützung klimaneutraler Bauvorhaben geschaffen werden.

Klimaneutrale Stadt

Vitality City - Holistic energy strategies for cities in transition

Energy simulation of any size city (municipalities) based on the data from laser scanning and satellite analysis (Geodata) to obtain dynamical energy demands and available energy resources.

Klimaneutrale Stadt

IMPACT – Hybrid hydraulic and electric charging of stratified compact hot water

The IMPACT project is developing an innovative decentralised hot water storage tech­nology for large-volume urban housing. Thanks to a novel, flat design, the sys­tem enables highly efficient utilisation of renewable energy sources such as heat pumps and photovoltaics. The aim is to create a cost-efficient, sustainable solution for decarbonising water heating that is optimised using intelligent energy manage­ment and machine learning methods.

Klimaneutrale Stadt

Circular Bio Floor- Floor construction made from biomaterials

In this project biogenic building materials from wood industry waste and geopolymer binders are developed that can be used as tamped fill or 3D-printed dry-screed elements in timber construction. These materials offer functional benefits and an excellent eco-balance, contribute to the conservation of forests and enable the production of separable and reusable floor segment panels using digital manufacturing technologies. That significantly reduces the consumption of primary raw materials.

Klimaneutrale Stadt

RCC2 – Reduced Carbon Concrete 2: Ökobilanz heizbarer Schalung für CO2-reduzierten und klimaneutralen Beton

Experimentelle Entwicklung innovativer Rezepturen CO2-reduzierten Betons sowie beheizter Schalung zur Unterstützung der Frühfestigkeitsentwicklung bei winterlichen Temperaturen. Schriftenreihe 26/2024
T. M. Romm, J. Flaszynska, M. Härtel, M. Kopp, D. Ehrenreich, T. Meinschad, P. Kasal, T. Belazzi, J. Horvath, M. Schwarzbauer, L. Kujawa, R. Pamminger, M. Löffler, F. Denk, H.-J. Zeiler, J. Hörler, J. Roth, A. Preuß, T. Groeneveld
Herausgeber: BMK
Deutsch, 71 Seiten

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