Suchergebnisse für "Factsheet: Energietechnologien gestalten, die für alle sinnvoll und nutzbar sind"

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 are going to be created. The results are going to be presented in compact form on the district level in order to serve as input for future urban planning projects.

Stadt der Zukunft

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

The goal of the project is to link 3D city models and virtual reality for energy-relevant applications as key-enabler for digital planning, construction and operational management. Missing data will be calculated using statistical enrichment methods.

Stadt der Zukunft

Stanz+ - An innovative, energy-flexible plus-energy district - the centre of the village Stanz

Stanz+ is working on the implementation of an energy strategy for structurally weak municipalities with specific measures for revitalisation and re-densification in the building stock as well as the integration of renewable energy sources in the municipality of Stanz im Mürztal (Styria). The project includes multipliable approaches towards energy autonomy, hybrid use of energy networks for flexible usage and an energetic revitalisation of the village centre with the involvement of users in the "Rural Pioneers Community" for the usage of energy services.

Stadt der Zukunft

Itz Smart – Carbon neutral city district development Itzling – Implementing innovation and technology via co-operative process design

The goal of the project “Itz Smart” is to tie in with existing activities and to consistently develop Itzling as a residential location further. In the test and demonstration area, sustainable residential quarters with trendsetting solutions for mobility are developed in the zone of the transport axis (railway and Schillerstraße) and along the local supply axis (Itzlinger Hauptstraße). The consideration of housing and mobility with regard to the aspect of “city of short ways“ also entails a discussion of determined mixed utilisation and the development of such residential quarters.

Stadt der Zukunft

KLIMADEMO VIS-A-VIS: Participatory realization of a climate-neutral demonstration building Vis-à-Vis

Participatory development of a pilot project at the interface between climate neutrality, affordability and multi-storey wooden housing based on well-founded decision-making bases in terms of renewable materials and renewable energies. The result is a multipliable carbon neutral building and the dissemination of carbon neutrality know-how to a larger audience.

Haus der Zukunft

StromBIZ - demonstration projects: business models for decentralized electricity generation and distribution

Feasible business models to utilize locally generated renewable energy are expected to induce a tipping point for the "Energy Turnaround" in Austria. Within the proposed project a number of demonstration PV plants on residential and non-residential buildings had been realized. On this basis new approaches of business cases had been developed, implemented, tested and disseminated.

Stadt der Zukunft

AFOM - Automatic failure and optimisation analysis by data-acquisition

In the project, methods will be developed for analysing measured value curves to detect changes in operation or failures in the system. By integrating BIM data of buildings, corresponding models will be generated to validate the heating, ventilation, and air conditioning (HVAC)-networks, which will be used for analysis.

Stadt der Zukunft

OWA+Quartier - Sustainable refurbishment and energy supply for the historic Otto-Wagner-Areal towards a plus-energy district

Development of thermal and electrical energy supply for the Otto-Wagner-Areal as well as model solutions for construction and building services in order to initiate the redevelopment of the area in the direction of a plus-energy district.

Haus der Zukunft

GreenPlusSchool@urban - Highly efficient facade and roof greening in combination with PV; optimal solution for energy efficiency in overall environmental consideration

In this project, different building-greening systems and plant/substrate types, combined with various PV modules, had been examined on a Viennese school. The influence on the hygrothermal behaviour of the building, energy-saving potential, humidity, shading, noise reduction, water retention and heat island effect are being scientifically explained. The students of the school will also be involved.

Haus der Zukunft

PEAR – Test facility for energy efficient automation and control of buildings

The energy demand calculated in the design phase often differs from measured values in the actual building operation. This projects reviews building automation and operation by presenting a solution how to assess energy efficiency of control strategies in the fields of air conditioning systems, concrete core activation and free cooling. The results are implemented in the demonstration building "Post am Rochus".

Stadt der Zukunft

VITALITY - Energy optimised design rules and integral planning approach for building-integrated photovoltaics in urban areas

The VITALITY project aims to provide supporting tools, design rules and robust information in the early decision and design phase of building projects. By providing the right information at the right time, building-integrated photovoltaics (BIPV) is part of the discussion in the concept phase and the implementation is strongly prepared and supported.

Stadt der Zukunft

SUBURBAHN – test- and demonstration-area for urban development and mobility around public transport stations in the central area of Upper Austria

Targeted, process-oriented conception for the implementation and operation of a test- and demonstration-area for urban development and mobility in Ansfelden involving relevant scientific stakeholders, local and regional stakeholders, decision-makers as well as the interested public according to the living lab approach.

Stadt der Zukunft

ECC – EnergyCityConcepts – Development of a methodology and concept for the implementation of sustainable energy systems in cities by the example of Gleisdorf and Salzburg

In the context of this project two concrete model regions (small city Gleisdorf and urban city quarter Salzburg-Schallmoos) will be developed and tested with new methodical approaches (interdisciplinary urban and regional energy planning, modeling and simulation). An ambitious political commitment of both model regions is a 100% renewable or rather CO2-neutral energy supply.

Stadt der Zukunft

Digital Submission - Preparation of planning and decision-making processes, digitisation of building permit procedures (D-SUB)

The aim of this project was to develop and evaluate the foundation for the implementation of digital processes for building permit procedures in Styria. The project started with the recording, processing, and validation of the actual processes of building permit procedures of the city of Graz and the municipality of Stainach-Pürgg.

Haus der Zukunft

Smart Services for resource optimized energy systems in urban districts

The concept of a smart city explicitly refers to a sustainable city development. To apply smart city concepts in practice, it is essential to develop practice- and profit-oriented business models (smart services), which at the same time generate social and ecological benefits. Smart services were developed for the application in three specific city development areas and their practicability was verified in a comprehensive stakeholder process with decision makers.

Haus der Zukunft

SIMULTAN - Simultaneous planning environment for buildings in resilient, highly energy efficient and resource-efficient districts

This project enabled the opportunity for an essential energy efficiency increase within overlapping buildings, to achieve the objective of resilient cities and districts with respect to a high quality of life, resource sustainability and energy efficiency. The goal was a workable tool based on a multidisciplinary planning approach, to support the decision finding process in order to design both refurbishment projects and new developments within a highly efficient city.

Stadt der Zukunft

plusenergy-FLAGSHIP: Plus-Energy office building 2.0 - the viadonau headquarters

In the course of this project, various innovations towards a "Plus-Energy Standard 2.0" are to be implemented and combined in an overall concept for the new viadonau headquarters (via donau - Österreichische Wasserstraßen-Gesellschaft m.b.H.).

Stadt der Zukunft

greenWATERrecycling – utilization of greywater for energy recovery and for providing greywater-filtrate for watering green walls

Development of a system for energy-recovery of waste heat of greywater and of greywater-filtrate in ordert o reduce the energy consumption of hot water supply and the water consumption for irrigation.

Stadt der Zukunft

SmallWindPower@Home - Impact assessment of building-mounted small wind turbines on performance, people, building and environment

Within the project SmallWindPower@Home the impact of complex obstacles on the local flow pattern as well as on the inflow and the performance of different building-mounted small wind turbines (SWT) had been evaluated. Furthermore the effects of these building-mounted SWT on the building, the resident people and the direct environment were analysed.

Haus der Zukunft

solSPONGEhigh - High solar fraction by thermally activated components in an urban environment

Within this project the intensive use of thermally activated building elements (TABs) as an additional thermal storage in different buildings, with solar technologies (thermal, PV) preferred for energy supply, was investigated. The aim was to activate and use the thermal storage potential that is immanent in the building elements and thereby achieve solar coverage of the building's heat demand of nearly 100 %.