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Compact bio-based thermal energy storage for buildings

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

Demo sites fully prepared, ready for the installation of the system (opens in new window)

D5.6 results in fully prepared demosites and ready for installation of the system. This means that the foreseen site is modified in a way the normal operation of the current system is ensured and the ability of implementing the demo is created. Therefor the needed space for positioning the prototype is created. Also the needed sensors are placed in the current energy system.Several connection points between the prototype and the current system will be made. These connection points are needed for supply and storage of the thermal energy.

Tutorials and workshop for energy managers and professionals (opens in new window)

This document will contain the summary of the tutorials for energy manager that will be organized in order to achieve specific knowledge in the area of energy flow management and system operation.

Report on LCA (opens in new window)

This report will provide details of LCA study for the energy storage system

ComBioTES system installed (opens in new window)

This document will summarized the process of system delivery and installation to the respective locations for testing purposes. At the sites, devices will be adapted to the respective system (hot tap water, heating system) as well as to the electrical system with the control unit and the software developed on the basis of WP3.

Modular-based design of the EMS: architecture and requirements (opens in new window)

This document will contain architecture design for the modularbased EMS solution functional requirements of each module and specification of modular interfaces

Dissemination and communication strategy document prepared (opens in new window)

This document will contain the definition of the dissemination and communication strategy and tools to be used during the life of the project All possible dissemination routes for the obtained results will be identified and used during the whole course of the project

Intelligent EMS algorithm (Preliminary release) (opens in new window)

This document will describe the preliminary release of the intelligent EMS algorithm and its perform which is validated in simulation.

ComBioTES final event (opens in new window)

This document will contain the summary of the ComBioTES event that will take place in one of the test sites to show the outcomes of the project in real time conditions.

Ice thermal storage tests report: 3 months test duration (opens in new window)

The document will cover the results from the thermal performance test of the ice storage system (developed by CEA) under climatic conditions of the South-central China

EMS prototype (opens in new window)

DTU will write a report about EMS prototype (basic version for DTU&CEA test/demo) right after the arrival of the PCM TES, i.e., March 2024, and a modified version for the Polish test site in June 2024 (if relevant).

Ice thermal storage installation & tests plan (opens in new window)

The document will cover the components of the testing system, instruments and apparatuses used in it, as well as experiments method and plan.

Database and Knowledgebase System (KBS) (opens in new window)

The details description of Database and KBS will be presented here

Development and maintenance of CombioTES webpage (opens in new window)

This document will contain the description of the ComBioTES webpage that will be prepared in the first months of the project

Intelligent EMS algorithm (Final release) (opens in new window)

This document will describe the final release of the intelligent EMS algorithm that is tested and validated in live experiments at SYSLAB.

Publications

Developing the next generation of renewable energy technologies: an overview of low-TRL EU-funded research projects (opens in new window)

Author(s): Laura M. Pérez, Fernanda Neira d'Angelo, Axel Gottschalk, Ahmed M. Salem, Daniel Carbonell, Mihaela Dudita-Kauffeld, Arnaud Bruch, Eleonora Alamaro, Luca Pasquini, Paola Ceroni, Anastasia Grozdanova,
Published in: Open Research Europe, 2023
Publisher: Open Research Europe
DOI: 10.12688/openreseurope.15276.1

Demand response with active phase change material based thermal energy storage in buildings (opens in new window)

Author(s): Aneesh Chandra Nunna, Yi Zong, Laurent Georges, Shi You
Published in: Energy Reports, Issue Volume 9, Supplement 3, 2023, Page(s) Pages 227-235
Publisher: Elsevier
DOI: 10.1016/j.egyr.2022.12.131

Experimental investigation of the solar latent heat thermal energy storage system integrated with salt hydrate phase-change materials (opens in new window)

Author(s): Xin Jin, Shi You
Published in: Energy Reports, Issue Volume 9, Supplement 11, October 2023, 2023, Page(s) Pages 502-511
Publisher: Elsevier BV
DOI: 10.1016/j.egyr.2023.09.076

Performance enhancement of a Latent Heat Thermal Energy Storage for Domestic Hot Water production (opens in new window)

Author(s): Bénédicte Champel, Arnaud Bruch, Fabrice Bentivoglio
Published in: Energy Reports, Issue 14, 2026, Page(s) 3221-3236, ISSN 2352-4847
Publisher: Elsevier BV
DOI: 10.1016/j.egyr.2025.10.005

A vertical multi-tube latent thermal energy system with tube inserts and radial fins: Experimental and CFD modeling study (opens in new window)

Author(s): Jiani Wu, Janne Dragsted, Simon Furbo, Arnaud Bruch, Quynh Trang Pham, Pengcheng Wang, Weiqiang Kong, Chenxuan Zhan, Yi Xu, Xin Li, Jianhua Fan
Published in: Journal of Energy Storage, Issue 122, 2025, Page(s) 116652, ISSN 2352-152X
Publisher: Elsevier BV
DOI: 10.1016/j.est.2025.116652

Optimal control of a bio-based phase change material thermal energy storage for demand response (opens in new window)

Author(s): Aneesh Chandra Nunna, Olav Galteland, Laurent Georges, Yi Zong
Published in: Energy Conversion and Management, Issue 326, 2025, Page(s) 119476, ISSN 0196-8904
Publisher: Pergamon Press Ltd.
DOI: 10.1016/j.enconman.2024.119476

Experimental investigation of the solar latent heat thermal energy storage system integrated with salt hydrate phase-change materials (opens in new window)

Author(s): Xin Jin; Shi You
Published in: Energy Reports, Vol 9, Iss , Pp 502-511 (2023), Issue 4, 2023, ISSN 2352-4847
Publisher: Elsevier
DOI: 10.1016/j.egyr.2023.09.076

Multi-scale experimental characterization and management of supercooling of isosorbide, a phase-change material for thermal energy storage (opens in new window)

Author(s): Arnaud Bruch, Fabrice Bentivoglio, Baptiste Boit, Awa Sy
Published in: Journal of Energy Storage, Issue 134, 2025, Page(s) 118032, ISSN 2352-152X
Publisher: Elsevier BV
DOI: 10.1016/j.est.2025.118032

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