Glass fiber core vacuum insulation panels (VIPs) are becoming an increasingly attractive option for building envelope construction due to lower cost and availability around the world. Although fumed silica core VIPs have shown superior long-term performance under accelerated aging tests compared to glass fiber core VIPS, these laboratory test results have yet to be verified with long-term field performance data. In 2011, glass fiber core VIPs were installed in a commercial building retrofit project in Yukon, Canada (one of Canada's most northern territories), and have been continuously monitored since. This paper summarizes the thermal performance of the glass fiber core VIPs over the period of 2011–2018 in an extreme cold climate. Findings...
New research has identified vacuum insulation panels (VIPs) as highly efficient insulators for use i...
Energy efficiency of the built environment greatly depends on the performance of the insulating mate...
Vacuum insulation panels (VIP) combine high thermal performance with minor thickness making them fit...
Vacuum insulation panels (VIPs) are high-performance insulating materials constructed by covering a ...
Energy efficiency solutions are being pursued as a sustainable approach to reducing energy consumpti...
Buildings consume about 40 % of the national energy requirement in a developed country, and the addi...
Apart from the higher initial cost for using vacuum insulation panels (VIPs) in buildings there is s...
AbstractApart from the higher initial cost for using vacuum insulation panels (VIPs) in buildings th...
The extremely low thermal conductivity of vacuum insulation panels (VIP) leads to less required insu...
AbstractAs a result of temperature and humidity vacuum insulation panels (VIP) age: their thermal re...
AbstractVacuum insulation panels (VIP) combine high thermal performance with minor thickness making ...
Vacuum insulation panels (VIPs) represent a high-performance thermal insulation material solution of...
Vacuum insulation panels (VIPs) represent a high-performance thermal insulation material solution of...
Vacuum insulation panels (VIP) are regarded as one of the most upcoming high performance thermal ins...
Vacuum insulation panels (VIP) are regarded as one of the most upcoming high performance thermal ins...
New research has identified vacuum insulation panels (VIPs) as highly efficient insulators for use i...
Energy efficiency of the built environment greatly depends on the performance of the insulating mate...
Vacuum insulation panels (VIP) combine high thermal performance with minor thickness making them fit...
Vacuum insulation panels (VIPs) are high-performance insulating materials constructed by covering a ...
Energy efficiency solutions are being pursued as a sustainable approach to reducing energy consumpti...
Buildings consume about 40 % of the national energy requirement in a developed country, and the addi...
Apart from the higher initial cost for using vacuum insulation panels (VIPs) in buildings there is s...
AbstractApart from the higher initial cost for using vacuum insulation panels (VIPs) in buildings th...
The extremely low thermal conductivity of vacuum insulation panels (VIP) leads to less required insu...
AbstractAs a result of temperature and humidity vacuum insulation panels (VIP) age: their thermal re...
AbstractVacuum insulation panels (VIP) combine high thermal performance with minor thickness making ...
Vacuum insulation panels (VIPs) represent a high-performance thermal insulation material solution of...
Vacuum insulation panels (VIPs) represent a high-performance thermal insulation material solution of...
Vacuum insulation panels (VIP) are regarded as one of the most upcoming high performance thermal ins...
Vacuum insulation panels (VIP) are regarded as one of the most upcoming high performance thermal ins...
New research has identified vacuum insulation panels (VIPs) as highly efficient insulators for use i...
Energy efficiency of the built environment greatly depends on the performance of the insulating mate...
Vacuum insulation panels (VIP) combine high thermal performance with minor thickness making them fit...