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Dive into the research topics where Arild Gustavsen is active.

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Featured researches published by Arild Gustavsen.


Journal of Building Physics | 2015

Thermal performance of in-between shading systems in multilayer glazing units: Hot-box measurements and numerical simulations

Steinar Grynning; Cezary Misiopecki; Sivert Uvsløkk; Berit Time; Arild Gustavsen

Shading systems are widely used, also in Nordic climates, in conjunction with glazed facade in office buildings. The primary functions of the solar shading devices are to control solar gains leading to cooling needs during operational hours and reduction of discomfort caused by glare. A secondary property of shading devices incorporated in glazing units is that they can be utilized as an additional layer in the glazing unit when the shading device is deployed. This can improve the thermal transmittance value (U-value) of the windows. It can be deployed during night-time or in periods when a blocked view does not have any consequences for the users of the building. This article presents hot-box measurements of thermal transmittance values (U-values) performed for three insulated glazing units with integrated in-between pane shading systems. The shading devices are venetian-type blinds with horizontal aluminum slats. The windows with double- and triple-pane glazing units have motorized blinds. The window with a 4-pane glazing has a manually operated blind placed in an external coupled cavity. The measurements are compared to numerical simulations using the WINDOW and THERM simulation tools. The results showed that only minor reductions of U-values of the glazing units were obtained as function of shading system operation. It was, however, found that the introduction of shading devices in the window cavities will increase the total U-value of the window due to thermal bridging effects caused by shading device motor and the aluminium slats of the blinds. coupled cavity.


Applied Energy | 2014

Insulating Glazing Units with Silica Aerogel Granules: The Impact of Particle Size

Tao Gao; Bjørn Petter Jelle; Takeshi Ihara; Arild Gustavsen


Construction and Building Materials | 2014

Aerogel-incorporated concrete: An experimental study

Tao Gao; Bjørn Petter Jelle; Arild Gustavsen; Stefan Jacobsen


Applied Energy | 2015

Aerogel granulate glazing facades and their application potential from an energy saving perspective

Takeshi Ihara; Tao Gao; Steinar Grynning; Bjørn Petter Jelle; Arild Gustavsen


Applied Energy | 2015

Effect of facade components on energy efficiency in office buildings

Takeshi Ihara; Arild Gustavsen; Bjørn Petter Jelle


Energy and Buildings | 2015

Impact of convection on thermal performance of aerogel granulate glazing systems

Takeshi Ihara; Steinar Grynning; Tao Gao; Arild Gustavsen; Bjørn Petter Jelle


Energy and Buildings | 2015

Aerogel granule aging driven by moisture and solar radiation

Takeshi Ihara; Bjørn Petter Jelle; Tao Gao; Arild Gustavsen


Energy and Buildings | 2016

Accelerated aging of treated aluminum for use as a cool colored material for facades

Takeshi Ihara; Bjørn Petter Jelle; Tao Gao; Arild Gustavsen


Applied Physics A | 2014

Lightweight and thermally insulating aerogel glass materials

Tao Gao; Bjørn Petter Jelle; Arild Gustavsen; Jianying He


Energy Procedia | 2015

Impact of Opaque Building Envelope Configuration on the Heating and Cooling Energy Need of a Single Family House in Cold Climates

Francesco Goia; Berit Time; Arild Gustavsen

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Bjørn Petter Jelle

Norwegian University of Science and Technology

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Tao Gao

Norwegian University of Science and Technology

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Takeshi Ihara

Norwegian University of Science and Technology

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Francesco Goia

Norwegian University of Science and Technology

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Cezary Misiopecki

Norwegian University of Science and Technology

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Jianying He

Norwegian University of Science and Technology

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Yu Wang

Norwegian University of Science and Technology

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