The EC Glazing Study @ DMU

An advanced electronic glazing system that darkens windows at the touch of a button and has the potential to revolutionise building façade design is being tested in offices at De Montfort University (DMU).

The windows - manufactured by SAGE Electrochromics Inc in the US - have a nanotech coating that can vary the level of tint when a small electric voltage is applied. Electrochromic glazing has the potential to dramatically alter the way we use glass in architecture, reducing the need for blinds or external shading devices without compromising occupant comfort or the energy performance of the building.

In building design, the ability to see out and maintain a connection with outdoors is now known to play a key role in the wellbeing of building occupants. This is especially the case in office spaces where workers spend the majority of time sitting at their desks. One of the crucial advantages of this type of glazing is its ability to maintain views out, even when the windows are tinted to the darkest level.

DMU has installed the windows in two offices at the university where the system is being studied in a normal working environment. The windows are operated by an automatic control system, with the control settings tailored to the application. They can also be manual controlled using wall-mounted switches. For maximum control flexibility, individual areas of window can be controlled independently.

This is the first commercial building in the UK to have electrochromic glazing installed, and is one of the first in Europe in a continuously occupied ‘typical’ office space. The data gathered by DMU scientists from its Institute of Energy and Sustainable Development (IESD) will be a key study in the evaluation of this technology.

IESD researchers are studying various aspects of the system in use, including the ability of the windows to control direct sunlight and bright skies to improve the comfort of occupants. They will also examine the effects of the system on the use of air conditioning during warm periods, and the users’ experience of the technology and user interface.

Dr Birgit Painter of the IESD who is co-ordinating the project, said: “This research project is the first to study electrochromic glazing in a typical work environment over an extended period of time.”

Window blinds that are typically used to control daylight are often left down so that occupants lose the benefits of daylight and views - this is known as “blinds down, lights on” syndrome. Electrochromic glazing could address this issue, as well as reducing reliance on electric lighting and air conditioning.

Ruth Kelly Waskett, a PhD student working on the project, added: “Electrochromic windows could be retrofitted to many types of building with large areas of glazing, including offices, schools and transport interchanges, which suffer from glare and overheating.”

Project Publications

For more information please contact:

Dr Birgit Painter - Project Supervisor
+44 (0)116 257 7957 







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