
DALKIA FRANCE SCA
DALKIA FRANCE SCA
3 Projects, page 1 of 1
Open Access Mandate for Publications and Research data assignment_turned_in Project2022 - 2026Partners:AIM, A2A, UL, A2A, VEOLIA +31 partnersAIM,A2A,UL,A2A,VEOLIA,FEDERCONSUMATORI MILANO APS,Kasetsart University,CyberGrid,AIM,EIFER,UNARETI,CyberGrid GmbH & Co KG,ACS,General Electric (France),TECNALIA,DALKIA FRANCE SCA,OPERATO DOO,TECNALIA,VEOLIA,FEDERCONSUMATORI MILANO APS,MDH,ENERGETIKA,OPERATO DOO,UNARETI,DALKIA FRANCE SCA,EHP,University of Kassel,ENERGETIKA,EHP,RSE SPA,Elektro Ljubljana, d.d.,RSE SPA,CyberGrid GmbH & Co KG,ACS,EIFER,Elektro Ljubljana, d.d.Funder: European Commission Project Code: 101075731Overall Budget: 9,938,450 EURFunder Contribution: 8,223,110 EURSENERGY NETS aims at demonstrating the technical and economic capability of multi-energy systems to decarbonize the heating and cooling, power and gas sectors through renewable energy sources produced locally as well as sector integration, by primarily focusing on promising infrastructure and business models. To do so, SENERGY-NETS will develop a set of tools and platforms (up to TRL7/8) aimed to optimise the planning of District Heating and Cooling as well as distribution grids with sector coupling consideration and allow the provision of flexibility services to Distribution and Transmission System Operators. These solutions will be implemented on three pilot sites located in Milan (IT), Ljubljana (SI) and Paris (FR) and their replicability will be tested in two additional real case studies presenting alternative climatic, economic and geographic conditions in Vsters (SW) and Cordoba (ES). The SENERGY NETS solutions will be adapted to the main stakeholders at the different phases of the projects development involving sector coupling: long term planning, design and simulation, operational planning, valorisation, evaluation and replication. The project will evaluate the benefits through a consolidated methodology developed to estimate the overall value created by sector integration, relying on the current economic, regulation and market rules and assess the impacts on the European power system. SENERGY NETS relies on a strong trans-disciplinary consortium involving 17 organisations located in 7 European countries, involving renowned experts from public authorities, infrastructure providers, research institutions, entrepreneurs and consumers associations. Altogether, they will provide the necessary knowledge, expertise and capacities to develop, demonstrate and evaluate developed tools and services enabling the integration of multi-energy systems to provide flexibility to the power system, and ultimately enable the decarbonisation of the energy system.
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For further information contact us at helpdesk@openaire.euassignment_turned_in Project2013 - 2016Partners:IDP Ingeniería y Arquitectura Iberia (Spain), ELECTRIC CORBY CIC, DALKIA FRANCE SCA, EDENWAY SAS, AJUNTAMENT DE SABADELL +21 partnersIDP Ingeniería y Arquitectura Iberia (Spain),ELECTRIC CORBY CIC,DALKIA FRANCE SCA,EDENWAY SAS,AJUNTAMENT DE SABADELL,FORTUM OYJ,DALKIA FRANCE SCA,IDP Ingeniería y Arquitectura Iberia (Spain),Cardiff University,COMMUNE D'ORLEANS,AJUNTAMENT DE SABADELL,FORTUM OYJ,EXELERIA,Everis (Spain),TEKNOLOGIAN TUTKIMUSKESKUS VTT OY,Telefonica Research and Development,EXELERIA,Telefonica Research and Development,TEKNOLOGIAN TUTKIMUSKESKUS VTT OY,TELEFONICA DE ESPANA SA,NTT DATA SPAIN, S.L.U.,ELECTRIC CORBY CIC,COMMUNE D'ORLEANS,Cardiff University,EDENWAY SAS,TELEFONICA DE ESPANA SAFunder: European Commission Project Code: 608649All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=corda_______::583e29373624f263d6c3818abd8a5b01&type=result"></script>'); --> </script>
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For further information contact us at helpdesk@openaire.euOpen Access Mandate for Publications and Research data assignment_turned_in Project2019 - 2023Partners:University of Split, Mijnwater Heerlen, ACS, Albertslund Kommune, Artelys (France) +55 partnersUniversity of Split,Mijnwater Heerlen,ACS,Albertslund Kommune,Artelys (France),ENISYST GMBH,Stuttgart University of Applied Sciences,EURAC,THERMAFLEX INTERNATIONAL HOLDING BV,SAMPOL INGENIERIA Y OBRAS,E.ON ENERGILOSNIGAR AKTIEBOLAG,SZCZECINSKA ENERGETYKA CIEPLNA SPOLKA Z OGRANICZONA ODPOWIEDZIALNOSCIA,EURAC,ARVALLA AB,OPES,MIJNWATER ENERGY BV,ENERGIE SOLIDAIRE,HochSchule Fur technik Stuttgart,DANFOSS A/S,INDEPRO AB,INDEPRO AB,DALKIA FRANCE SCA,LJECILISTE TOPUSKO,HUNOSA,ACS,University of Rijeka, Faculty of Physics,Albertslund Kommune,UNIZAG FSB,Energie PLUS Concept GmbH,Artelys (France),CARTIF,General Electric (France),SIVL,HAWK FHHHG,THERMAFLEX INTERNATIONAL HOLDING BV,ARVALLA AB,HUNOSA,CARTIF,SAMPOL INGENIERIA Y OBRAS,E.ON ENERGIINFRASTRUKTUR,MIJNWATER ENERGY BV,HAWK FHHHG,DALKIA FRANCE SCA,EHP,AAU,UNIZAG FSB,RINA-C,HAMBURGER ENERGIEWERKE GMBH,EHP,KWA CONTRACTING AG,KWA CONTRACTING AG,RINA-C,ENISYST GMBH,EHPA,ENERGIE SOLIDAIRE,Energie PLUS Concept GmbH,SZCZECINSKA ENERGETYKA CIEPLNA SPOLKA Z OGRANICZONA ODPOWIEDZIALNOSCIA,E.ON ENERGILOSNIGAR AKTIEBOLAG,LJECILISTE TOPUSKO,OPESFunder: European Commission Project Code: 857811Overall Budget: 19,023,300 EURFunder Contribution: 14,999,500 EURIt is in urban areas that the demand for heating and cooling demand assumes highest density. At the same time a huge amount of low-grade waste heat is diffused within the urban texture, the largest amount being rejected by air-conditioners, cooling systems in industrial processes and tertiary buildings (i.e. dry coolers and wet cooling towers), datacentres’ chillers and supermarkets’ refrigeration systems. Moreover, for historic reasons, cities have born along rivers, lakes and seashores. All these sources make low-temperature renewable energy available, which utilisation is highly replicable because it is accessible right where it is needed. Having this in mind, the overall objective of REWARDHeat is to demonstrate a new generation of low-temperature district heating and cooling networks, which will be able to recover low-grade renewable and waste heat available at low temperature. Focusing on the exploitation of the energy sources available within the urban context allows to maximize the replicability potential of the decentralized solutions developed in the project. REWARDHeat will promote punctual metering, thermal storage management, network smart control as means to enable and optimise the exploitation of renewable and waste heat in DHC networks. At the same time, this approach permits a change of paradigm with respect to the business models devised: thermal energy will not be seen as a commodity anymore, rather it will be sold as a service to the customers.
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