Search results

There are 34 results.

Stadt der Zukunft

BTTAB - Broad-based testing of energy-efficient demonstration buildings with thermally activated building components

Buildings with thermal building component activation that have not yet been researched in as many federal states and application categories as possible will be monitored, which will include operating data as well as the experiences of those involved. The aim of this study is to take a general look at the various applications of the thermal building component activation technology and to evaluate and compare the pilot projects with the help of suitable evaluation criteria.

Stadt der Zukunft

Biotope City - construction manual for the green city of the future

"Biotope City" is an overall concept for the implementation of comprehensive urban greening with the aim of using the regenerative mechanisms of nature. With this approach, quality of life is to be comprehensively, sustainably and cost-effectively increased and resilience against extreme weather events in cities will be improved. The project aims to generate realistic components of a "construction manual" for the green city of the future, which are generalizable and transferable.

Stadt der Zukunft

CO2 neuBau - The CO2-neutral Construction Site: a Contribution to the Climate Protection by the Austrian Construction Industry

Identification of all direct and indirect CO2, respectively, GHG emissions generated at construction sites. Analysis of the framework conditions and technologies towards demonstrating the options for their control. In parallel, added values, such as cost-benefit advantages of a CO2-neutral construction site, were outlined and quantified.

Klimaneutrale Stadt

Climate Scan District - Exploration and evaluation of potential districts regarding their suitability as a pioneer district

The "Climate Scan District" project aims to select the most suitable pioneer district in Dornbirn by applying the klima:aktiv criteria catalog for climate-neutral districts. This supports the city's transformation to climate neutrality by 2040. Extensive district profiles, action plans, and future visions are developed to create a well-founded and comprehensive basis for decision-making.

Stadt der Zukunft

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.

Stadt der Zukunft

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.

Klimaneutrale Stadt

ELEMENTS - Development of a procedure for the evaluation of elements of the post-war building stock (1960 - 1979) in Graz, Austria

Investigation of the building stock constructed in Graz between 1960 and 1980 with the aim of creating the basis for developing a potential analysis procedure regarding its preservation and refurbishment. Stakeholders, including those from the fields of planning and building practice, will be involved in the development of the results.

Stadt der Zukunft

Enerspired Cities - open and harmonized infomation basis for energy oriented urban planning

In "Enerspired Cities" the concept for an automized junction of judicial secured access regulation to (geo-)energy data is elaborated. This will be adapted to the specific situations in the cities of Innsbruck, Salzburg and Vienna and implemented in dedicated pilot applications. The declared aim is the support of urban planning, monitoring and research by an easy and transparent access to base data coming from various sources for a wide range of users.

Stadt der Zukunft

F4WM - Fit4WienerMission

Preparation for the EU Urban Mission by updating goals and strategies (Smart City Wien Framework strategy, Climate-Roadmap), developing a manual for climate-neutral Viennese neighbourhoods and concepts for the participation of citizens (Climate Citizens' Council) and businesses (Climate Agreements), as well as a city-internal capacity and structural planning.

Klimaneutrale Stadt

FROSCHBERG 2.0 - Designing existing neighborhood(s) to be renewable and replicable

Exploration of replicable solutions for the socially acceptable transformation of existing neighbourhoods towards climate neutrality using the example of the Froschberg workers' housing estate. The result, the presentation and integration of climate neutrality into the refurbishment roadmap for the Froschberg workers' housing estate, serves as a starting point for implementation in a follow-up project.

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

The aim of the project is to avoid overheating in summer by using innovative greening measures in the mixed residential and commercial area Aspernstraße/Lavaterstraße. The development of a guideline should facilitate the realisation of climate-sensitive projects from strategy to actual implementation and ensure a high degree of transferability to other areas.

Stadt der Zukunft

GreenTech-Renovation - Energetic Renovation of Glass Buildings of Architectural Value

The focus of the GreenTech-Renovation project was to find innovative solutions for the energetic renovation of architecturally valuable buildings with a high proportion of glass. A future-oriented building physics concept that includes the use of alternative forms of energy had been developed for this purpose. With ecological and social commitment, an intelligent usage concept could strengthen the energetic renovation concepts and guarantee their sustainability. The 10-Rs of the circular economy (Refuse, Rethink, Reduce, Reuse, Repair, Refurbish, Remanufacture, Repurpose, Recycle, Recover) will serve as a guideline.

Stadt der Zukunft

INFINITE: INnovative FINancing models for sustaInable urban energy sysTEms

The goal of the INFINITE-project is to lay the foundations for a more wide-spread implementation of urban energy supply systems across buildings, using renewable energy sources produced in local supply units. At the same time the projects supports to reduce the demand for fossil fuels and higher-level energy infrastructure.

Stadt der Zukunft

KoPro Lzk+ - Cost and process optimization in the life cycle of nearly zero energy buildings

The aim of the project was to develop a continuous process chain for the energetic-economic optimization of zero and plus energy buildings. The project focused on proven and new approaches to cost reduction of nearly zero energy buildings (nZEBs) at all stages of the life cycle. The main goal was to identify the extra-costs for nZEBs, and to promote innovative approaches taking into account the cost-effectiveness for all the Stakeholders. A database containing important cost parameters and potential savings will be developed.

Klimaneutrale Stadt

LehB:KlimafitDemo2+1 - Living in existing buildings today: climate-friendly renovations in existing buildings within the framework of the common good housing law

The LehB:KlimafitDemo2+1 project examines innovative renovation solutions for the climate-fit modernization of non-profit residential buildings without placing a financial burden on tenants. By implementing a flexible modular system and involving the residents, economic, technical and social aspects of the renovation are optimized. The aim is to make an important contribution to achieving climate neutrality by 2040 through adapted measures and comprehensive monitoring.

Stadt der Zukunft

LehB:klimafit! Live in existing buildings today: climate fit together

The aim of the project is to explore transferable renovation concepts for the implementation of climate-fit renovations in Vienna. Integrally optimized renovation packages will be developed, which will be optimized in the building ensembles for implementation-probable, climate-friendly overall solutions with the relevant stakeholders.

Stadt der Zukunft

Move2Grid – Implementation of regional energy-supply-concepts by hybrid coupling

Based on the results of the national-funded exploratory projects called “Smart Exergy Leoben”, and “Energy Sponge Bruck”, the present implementation project aims at analysing how local, renewable resources support the supply of electric mobility in Leoben in the long term and to integrate it into the municipal distribution grid in a good economic sense.

Stadt der Zukunft

NEBKrit - Quality criteria for buildings and neighbourhoods on the basis of the New European Bauhaus

Develop criteria of aesthetics and social inclusion based on the values of the New European Bauhaus to complement existing sustainability criteria in order to evaluate buildings and neighbourhoods more broadly. Since todayʼs necessary transformation of the economy always includes cultural and social aspects, such a broader assessment makes more sense than todayʼs usual methods.

Stadt der Zukunft

NaNu3 - Parametric Planning for a Sustainable Roof (Blue, Grey and Green)

Demonstration of the feasibility and validation of a parametric model that can evaluate the practical and financial feasibility of the combined use of roof areas as well as its microclimate and environmental effectiveness at an early planning stage.