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  3. SEBF - Solar Energy Balanced Facade SEBF - Solar Energy Balanced Facade

SEBF - Solar Energy Balanced Facade

The solar-energy balanced façade (SEBF) system is a new hybrid façade system, a transparent–opaque solar façade, which incorporates seasonal adaptive daily solar-gain management to achieve an improved energy balance.

Brief information

School:

Engineering and Architecture

Status:

Completed

Period:

01.11.2016 - 31.12.2019

Overview

The energy consumption of a building is directly related to its façade. Multi-functional and adaptive building envelopes can provide step-change improvements in the energy efficiency of new and refurbished buildings while improving the wellbeing of building occupants.
The review of existing façade systems and ongoing research show that transparent and opaque façades are generally considered separately. This is why a new hybrid façade system, a transparent–opaque solar façade which incorporates seasonal adaptive daily solar-gain management to achieve an improved energy balance – is proposed: the solar-energy balanced façade (SEBF) system.
The idea is to improve the thermal performance of the transparent part by utilizing the opaque thermal mass with a minimum amount of technical installation. While the basic structure of the facade meets the current static requirements, the additional adaptive features provide a much better adaptive energy performance. The SEBF supports HVAC systems rather than hindering or restricting their function, which satisfies the basic requirement of system separation.

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Facts

Type of project

Forschung

Internal organisations involved
  • OLD - CC Building Envelope
  • CC Building Envelopes and Civil Engineering
Funding
  • SBFI
  • Forschungsfinanzierung allgemein
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Persons involved: internal

Project manager
  • Andreas Luible
Member of project team
  • Kilian Arnold
  • Thomas Wüest

Publications

  • Article, review; peer reviewed (4)

    • Wüest, Thomas; Grobe, Lars Oliver & Luible, Andreas (2021). Effects of Phase Change Materials on heat flows through double skin facades. Journal of Façade Design and Engineering, 9(1), 17-30. doi: 10.7480/jfde.2021.1.5408

    • Wüest, Thomas; Grobe, Lars Oliver & Luible, Andreas (2020). An Innovative Façade Element with Controlled Solar-Thermal Collector and Storage. Sustainability, 12(13), 5281. doi: 10.3390/su12135281

    • Wüest, Thomas & Luible, Andreas (2019). Trombe Curtain Wall Façade. Journal Facade of Design and Engineering - Special Issue Powerskin 2019, Vol 7(No 1), 1-12. doi: 10.7480/jfde.2019.1.2619

    • Wüest, Thomas; Luible, Andreas & Schütz, Philipp (2019). Outdoor Test Cell Modelling with Modelica. Buildings, 9(10), 1-21. doi: 10.3390/buildings9100209

  • Article, review; not peer reviewed (1)

    • Wüest, Thomas (16.4.2018). SOLAR ENERGY BALANCED FACADE: Doppelhautfassade mit passivem Wärmespeicher. Metall, 1.

  • Chapter/legal commentary/lexicon article (1)

    • Wüest, Thomas & Luible, Andreas (2018). Solar Energy Balanced Facade. In Andreas Luible, Susanne Gosztonyi (Hrsg.), Facade 2018 - Adaptive! Proceedings of the COST Action TU1403 Adaptive Facades Network Final Conference (S. 183-194). Delft: TU Delft.

  • Report/working paper (3)

    • Wüest, Thomas (2020). SEBF: Parameterstudie. Ermitteln der Einflussgrössen an der Solar Energy Balanced Facade (SEBF) (Bericht). Horw.

    • Wüest, Thomas (2020). Baubericht: Thermische Prüfbox (Bericht). Horw.

    • Wüest, Thomas (2020). SEBF Prototyp: Bericht zum Prototypen Solar Energy Balanced Facade - SEBF (Bericht). Horw.

  • Presentation (conference/report/lectures) (3)

    • Luible, Andreas & Wüest, Thomas (17.01.2019). Trombe Curtain Wall Facade. Powerskin München, München.

    • Wüest, Thomas (07.11.2017). Solar Energy Balanced Facade - SEBF. ne-xt facades 2017, München.

    • Wüest, Thomas (07.11.2017). Solar Energy Balanved Façade - SEBF. ne-xt facades 2017, München.

Brief information

School:

Engineering and Architecture

Status:

Completed

Period:

11/01/2016 - 12/31/2019

Project Head

Prof. Dr. Andreas Luible

Head of the Institute of Civil Engineering

+41 41 349 34 79

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