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CORDIS - EU research results
CORDIS

ENergy harVesting by Invisible Solar IntegratiON in building skins

CORDIS provides links to public deliverables and publications of HORIZON projects.

Links to deliverables and publications from FP7 projects, as well as links to some specific result types such as dataset and software, are dynamically retrieved from OpenAIRE .

Deliverables

Promo Material Description: Poster and Leaflet (opens in new window)

Communication toolkit consisting of brochure, roll up poster, one page project description and project presentation in PowerPoint will be designed at the early stage (M6) of the project to support partners during dissemination events.

Best practices handbook and instruction manual for the guided realization, monitoring, maintenance and adaption of the façade energy harvesting modules in a full renovation concept (opens in new window)

A best practices handbook and instruction manual for the guided realization and adaption of the façade energy harvesting modules in a full renovation concept will be developed in this task defining maximum size and weight of the modules, the mounting and anchorage systems and the mitigation risk strategies to solve possible common problems.

Lessons learnt through the ENVISION energy harvesting retrofitting project execution: test site data collection and consolidation summary - public summary (opens in new window)

Public summary of D57 lessons learnt through the ENVISION energy harvesting retrofitting project execution test site data collection and consolidation summary

Communication and Dissemination Plan (opens in new window)

Communication and Dissemination Plan will be produced at the beginning of the project (M6). The deliverable will contain, the target groups, the target audiences, key messages, the communication channels, tools, the specific actions and timelines for ENVISION project. This to enable exploitation of project results. The plan will be updated on a yearly basis, and will include a report on activities performed as well as provide an overview of activities foreseen for the next period.

KPIs plan for the monitoring and assessment of the technologies at demo sites levels (opens in new window)

Development of a methodology for the evaluation of the three demonstrators (UGT,VST,NSG), essential to foster transfer and replication in different European regions. A generic monitoring methodology will be developed applicable for both demonstrators to assess the performances (based on DAP expertise). The methodology will be based on measurements and monitoring protocols developed according to tailored Key Performance Indicators (KPI), clustered in four main categories: technical, economic, environmental and social indicators. To be comprehensive and effective, the methodology will include a list of generic KPIs, an analysis of the concept of each demonstrator, the identification of the baseline situation, the identification of a list of KPIs specific for the single demo as well as the definition of common conventions for calculation of specific KPIs. This deliverable will include the demonstration in Delft - Vestia, in Genoa - UGT, and in Austria - NSG

Methodology for energy efficiency assessment of the ENVISION technologies - public summary (opens in new window)

Public summary of D53 methodology for energy efficiency assessment of the ENVISION technologies

Reports of field implementation at demo cases (opens in new window)

The aim is to demonstrate and validate the ENVISION technologies through a 3-step process. Starting from the validation of the products at lab scale (TRL 5) and the demonstration in relevant environment (TRL 6) performed in WP2 and WP3 respectively, ENVISION technologies will be tested in two kinds of building (detached house and block of flats) to improve their TRL up to 7 in a largest size test bench in operational environment (both at building and district level) according to the project roadmap. Status of field implementation at demo cases will be reported

District Simulation platform description and validation through TRL 6 test (opens in new window)

The modelling at the scale of the district requires specific adaptations for the interaction of local building modelled in T4.1. The local microclimate has to be accurately considered. Automatic model generation (i.e. from CityGML) and reduction approaches will be experimented with, in order to minimize the modelling efforts associated with the large number of buildings that will be simulated. Finally, as the project integrates technical solutions that combine, insulation and energy harvesting functions and energy exchange between the buildings and existing District Heating Network or National grid, it is necessary to evaluate the contribution of each energy harvesting components to the overall performance.

Baseline reports of pre-renovation condition of demonstration case (opens in new window)

Monitoring methodology and KPIs for the performance evaluation of the three demonstration sites will be specifically identified, according to local conditions, local specific pilot needs and current monitored data. This deliverable will include the demonstration in Delft - Vestia, in Genoa - UGT, in Austria - NSG

Building Simulation platform description and validation through TRL 6 test (opens in new window)

Most of the modelling elements that are necessary for evaluating the developed systems are already existing from previous research experiences of EDF Nevertheless some new components energy harvesting faade ventilated glazing energy storage and energy management systems will be developed within the project based on the input of the ENVISION technology providers EMGTNOBGTNSGAN Automatic model generation ie from a BIM and reduction approaches will be experimented with in order to minimize the modelling efforts associated to the complexity of buildings shape materials etc UGTVST Finally as the project integrates technical solutions which combine insulation and energy harvesting functions it is necessary to evaluate the contribution of each function to the overall performance

Report on awareness campaign (opens in new window)

Participation in regional national and international events conferences fairs workshops and seminars on energy efficiency sustainable development smart energy systems district heatingcooling will be used to promote the ENVISION results as well as cluster activities enhancing the sharing experience with other H2020 projects Project publications are planned in the thematic portals eg BuildUp industry magazines scientific peerreviewed journals and others eg Projects magazine Horizon 2020 Projects Horizon The EU Research and Innovation magazine

Energy Storage for Optimal Energy Harvesting Exploitation- public summary (opens in new window)

Public summary of D47 describing small scale electrical and thermal storage used in the renovation concept to enhance its potential Different technologies for electrical and thermal storages will be analyzed to find the best solution for integration of the investigated harvesting technologies with DH and grid operationThis analysis will be performed both at district and building level to study the most suitable size and storage technology for both situations considering the interaction with existing energy systems and stakeholders

Publications

Techno-economic analysis for the assessment of heat pump integration in a real poly-generative energy district (opens in new window)

Author(s): Barberis S.; Robello P.; Rattazzi D.; Rivarolo M.; Bellotti D.; Magistri L.
Published in: E3S Web of Conferences, 2019
Publisher: EDP Sciences
DOI: 10.1051/e3sconf/201911303011

Dynamic model validation of an innovative NIR-solar façade panels-based integrated system (opens in new window)

Author(s): C. Anfosso, L. Gini, D. Bellotti, L. Magistri
Published in: 2022
Publisher: Applied Energy
DOI: 10.46855/energy-proceedings-10230

Application of MyBEM, a BIM to BEM platform, to a building renovation concept with solar harvesting technologies (opens in new window)

Author(s): Mathias Bouquerel, Kevin Ruben Deutz, Benoit Charrier, Thierry Duforestel, Mickael Rousset, Bart Erich, Gerrit-Jan van Riessen, Thomas Braun
Published in: 2021
Publisher: Proceedings of the 17th IBPSA Conference Bruges, Belgium, Sept. 1-3, 2021
DOI: 10.26868/25222708.2021.30153

Control Strategies for solar façade panels coupled with a Heat Pump and interacting with a District Heating Network (opens in new window)

Author(s): D. Rattazzi, I. Rossi, L. Magistri and S.J.F. Erich
Published in: E3S Web of Conferences, Issue E3S Web of Conferences 113, 03014 (2019), 2019
Publisher: EDP Sciences
DOI: 10.1051/e3sconf/201911303014

Experimental results of an innovative NIR- solar façade panels-based polygeneration system (opens in new window)

Author(s): C. Anfosso, D. Bellotti, L. Gini, L. Magistri
Published in: 2022
Publisher: Applied Energy
DOI: 10.46855/energy-proceedings-10229

Energy harvesting of building skins - an innovative renovation for gas-free heating (opens in new window)

Author(s): S.J.F. Erich, C. de Keizer, R. Valckenborg, S. van Leeuwen, R. Donkervoort, N. Meulendijks, A. Stuiver, G.J. v. Riessen, H.J. Weggeman, M. van Dooremalen, E. Waterreus and H. v.d. Ven
Published in: IOP Conference Series: Earth and Environmental Science, Issue 17551307, 2022, ISSN 1755-1307
Publisher: IOP Conference Series: Earth and Environmental Science
DOI: 10.1088/1755-1315/1085/1/012001

Intellectual Property Rights

Inrichting voor het collectioneren van warmte door middel van een samenstel van warmtecollectoren, dat is ingericht om te functioneren als buitenblad van een van een spouw voorziene wand

Application/Publication number: 10 42807
Date: 2018-04-03
Applicant(s): EMERGO HOUT & BOUW BV

SYSTEM AND METHOD FOR ENERGY HARVESTING

Application/Publication number: 19 178057
Date: 2019-06-04
Applicant(s): NEDERLANDSE ORGANISATIE VOOR TOEGEPAST NATUURWETENSCHAPPELIJK ONDERZOEK TNO

SYSTEM AND METHOD FOR ENERGY HARVESTING

Application/Publication number: 19 178057
Date: 2019-06-04
Applicant(s): EMERGO HOUT & BOUW BV

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