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InDeWaG SIGNED

Industrial Development of Water Flow Glazing Systems

Total Cost €

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EC-Contrib. €

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Partnership

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Project "InDeWaG" data sheet

The following table provides information about the project.

Coordinator
UNIVERSITAT BAYREUTH 

Organization address
address: UNIVERSITATSSTRASSE 30
city: BAYREUTH
postcode: 95447
website: www.uni-bayreuth.de

contact info
title: n.a.
name: n.a.
surname: n.a.
function: n.a.
email: n.a.
telephone: n.a.
fax: n.a.

 Coordinator Country Germany [DE]
 Project website http://indewag.eu
 Total cost 4˙996˙786 €
 EC max contribution 4˙230˙351 € (85%)
 Programme 1. H2020-EU.3.3.1. (Reducing energy consumption and carbon foorpint by smart and sustainable use)
 Code Call H2020-EE-2015-1-PPP
 Funding Scheme IA
 Starting year 2015
 Duration (year-month-day) from 2015-08-01   to  2020-02-29

 Partnership

Take a look of project's partnership.

# participants  country  role  EC contrib. [€] 
1    UNIVERSITAT BAYREUTH DE (BAYREUTH) coordinator 520˙205.00
2    UNIVERSIDAD POLITECNICA DE MADRID ES (MADRID) participant 918˙223.00
3    FRAUNHOFER GESELLSCHAFT ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E.V. DE (MUNCHEN) participant 595˙500.00
4    ETEM BULGARIA AD BG (SOFIA) participant 532˙098.00
5    CENTRAL LABORATORY OF SOLAR ENERGY& NEW ENERGY SOURCES OF THE BULGARIAN ACADEMY OF SCIENCES BG (Sofia) participant 408˙073.00
6    BOLLINGER + GROHMANN CONSULTING GMBH DE (FRANKFURT AM MAIN) participant 329˙673.00
7    HTCO GmbH DE (FREIBURG IM BREISGAU) participant 269˙791.00
8    GMAE TRANSFORMA SL ES (MADRID) participant 236˙960.00
9    ARCHITEKTONIKA STUDIO DRUZHESTVO SOGRANICHENA OTGOVORNOST BG (SOFIA) participant 231˙875.00
10    CERVIGLAS S.L. ES (TURIS) participant 187˙950.00

Map

 Project objective

Although Nearly Zero Energy Buildings will become a “must” for new buildings in Europe by the end of 2020 – no particular building concept exists, which would enable maximum use of daylight by a transparent glass façade and at the same time ZEB performance. InDeWaG is introducing a new, disruptive building envelope system which has a at least 15% building cost reduction potential and could be brought to industrial ripeness. The cost reduction goal and ZEB performance will be achieved with Fluid Flow Glazing facades (FFG) and Radiant Interior Walls (RIW), while minimizing the size of HVAC and PV-installations. InDeWaG is following a dual strategy to bring costs of ZEB down: The project concentrates on industrial production of standardized building components, which can be used for multiple types of ZEB in different climate zones and on the development of a simulation tool for precise early stage planning of buildings which use these innovative glazing building envelope and interior elements.

 Deliverables

List of deliverables.
Templates for reporting Documents, reports 2020-04-06 09:43:27
Templates for Deliverable reporting, introduction to financial reporting Documents, reports 2020-04-06 09:43:27
Report on geometrical variants of glazing and fluid composition concepts for the FFG facade Documents, reports 2020-04-06 09:43:27
Evaluation of best district on-going projects in Bulgaria, Spain, and other EU countriesn-going projects in Bulgaria, Spain, Germany Documents, reports 2020-04-06 09:43:27
Digital newsletter No. 1 Websites, patent fillings, videos etc. 2020-04-06 09:43:27
Selection of software and data base for LCA Documents, reports 2020-04-06 09:43:27
Preliminary single site ZEB market analysis in Spain, Bulgaria, Germany Documents, reports 2020-04-06 09:43:27
Case study for Bulgarian- and Spain-Demo-sites, different variants of façade Documents, reports 2020-04-06 09:43:27
Press Release (kick-off) Websites, patent fillings, videos etc. 2020-04-06 09:43:27
First generation of site-ZEB building simulation with performance data of existing Water Flow Glazing Documents, reports 2020-04-06 09:43:27
Recommendation of glazing/coatings, polymers and frame materials selection according to LCA (to WP 4,5, 6) Documents, reports 2020-04-06 09:43:27
Recommendations for microfluidic improvement for WFG and AFG Documents, reports 2020-04-06 09:43:26
First version of energy management system defined Documents, reports 2020-04-06 09:43:26
Implementation of BIPV into building simulation Demonstrators, pilots, prototypes 2020-04-06 09:43:26
Implementation of relevant climatic situations and weather conditions Demonstrators, pilots, prototypes 2020-04-06 09:43:26
Full building simulation and case studies with FFG module for IDA ICT ready Demonstrators, pilots, prototypes 2020-04-06 09:43:26
Project Leaflet & Roll-up Version 1 Websites, patent fillings, videos etc. 2020-04-06 09:43:26
Digital newsletter No. 2 Websites, patent fillings, videos etc. 2020-04-06 09:43:26
Timing of project meetings, kick-off in Spain Documents, reports 2020-04-06 09:43:26

Take a look to the deliverables list in detail:  detailed list of InDeWaG deliverables.

 Publications

year authors and title journal last update
List of publications.
2018 Daniel Pfanner, Teodora Vatashka, Astrid Münzinger, Ümit Esiyok, Daniel Leykam
Der Traum vom Licht - Tageslicht, Ausblick und Energieeffizienz mittels Fluid Flow Glazing
published pages: 199-210, ISSN: 2509-7075, DOI: 10.1002/cepa.642
ce/papers 2/1 2020-04-06
2017 Fernando del Ama Gonzalo, Juan A. Hernandez Ramos, Belen Moreno
Thermal Simulation of a Zero Energy Glazed Pavilion in Sofia, Bulgaria. New Strategies for Energy Management by Means of Water Flow Glazing
published pages: 42011, ISSN: 1757-8981, DOI: 10.1088/1757-899X/245/4/042011
IOP Conference Series: Materials Science and Engineering 245 2020-04-06
2018 Fernando Del Ama Gonzalo, Belen Moreno and Juan A. Hernandez
The use of Water Flow Glazing with variable g value in Net Zero Energy residential and office buildings
published pages: , ISSN: 1947-8402, DOI:
International Journal of Social Ecology and Sustainable Development 2020-04-06
2017 Pablo Sierra, Juan A. Hernández
Solar heat gain coefficient of water flow glazings
published pages: 133-145, ISSN: 0378-7788, DOI: 10.1016/j.enbuild.2017.01.032
Energy and Buildings 139 2020-04-06
2018 Belen Moreno, Juan A. Hernández
Analytical solutions to evaluate solar radiation overheating in simplified glazed rooms
published pages: 162-172, ISSN: 0360-1323, DOI: 10.1016/j.buildenv.2018.05.037
Building and Environment 140 2020-04-06
2017 Xabier Romero, Juan A. Hernández
Spectral problem for water flow glazings
published pages: 67-78, ISSN: 0378-7788, DOI: 10.1016/j.enbuild.2017.03.013
Energy and Buildings 145 2020-04-06
2018 Fernando Del Ama Gonzalo, Belen Moreno and Juan A. Hernandez
Dynamic Solar Energy Transmittance for Water Flow Glazing in Residential Buildings
published pages: 9188-9193, ISSN: 0973-4562, DOI:
International Journal of Applied Engineering Research Volume 13, Number 11 2020-04-06
2018 Daniel Pfanner, Teodora Vatashka, Ãœmit Esiyok, Daniel Leykam
A new building envelope - increasing daylight and energy efficiency with water flow glazing
published pages: 135-147, ISSN: 2509-7075, DOI: 10.1002/cepa.917
ce/papers 2/5-6 2020-04-06
2016 Luis J. Claros-Marfil, J. Francisco Padial, Benito Lauret
A new and inexpensive open source data acquisition and controller for solar research: Application to a water-flow glazing
published pages: 450-461, ISSN: 0960-1481, DOI: 10.1016/j.renene.2016.02.037
Renewable Energy 92 2020-04-06
2017 Belen Moreno, Fernando Del Ama Gonzalo, Juan A. Hernandez
Designing a wireless sensor with ultra-capacitor and PV microcell for smart building energy management
published pages: 1, ISSN: 1741-1068, DOI: 10.1504/IJES.2017.10009297
International Journal of Embedded Systems 1/1 2020-04-06

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