In recent years there have been considerable improvements in the energy and environmental performance of buildings, due not only to the creation of building envelopes with a low level of thermal transmittance but also to the use of natural (“green”) materials. Construction systems combining a woodenframework with eco-compatible materials represent solutions for a building envelope, which prove effective in reducing both energy needs and the discharge of polluting substances. The principal aim of thepresent research is to investigate the use of natural waste materials from farm products in the creationof building envelopes. The system described here proposes the use of compressed straw to obtain a layerof insulating material, that may be combined with the use of a wooden shell known as platform frame.The thermo-physical characteristics, energy performance as well as the hygrometric features of theproposed system were tested in various sites. As regard the formation of condensation, the thermohygrometric analysis proved the absence of such threat over a period of a whole year in all the differentclimates observed.A comparison with a similar XLAM system evidenced that the platform frame system lined internallywith compressed straw offers a 12% reduction in U thermal transmittance, a 22% improvement in YIEperiodic thermal transmittance, and a comparable thermal lag.Moreover, the platform frame system filled with compressed straw allows a cost reduction by 38%compared to the XLAM system.On the whole, the outcomes obtained indicate that the platform frame system with compressed strawoffers a suitable alternative to the XLAM system, above all in the case of buildings of two or three stories.

Energy performance and environmental and economic assessment of the platform frame system with compressed straw

Cascone S
;
2018-01-01

Abstract

In recent years there have been considerable improvements in the energy and environmental performance of buildings, due not only to the creation of building envelopes with a low level of thermal transmittance but also to the use of natural (“green”) materials. Construction systems combining a woodenframework with eco-compatible materials represent solutions for a building envelope, which prove effective in reducing both energy needs and the discharge of polluting substances. The principal aim of thepresent research is to investigate the use of natural waste materials from farm products in the creationof building envelopes. The system described here proposes the use of compressed straw to obtain a layerof insulating material, that may be combined with the use of a wooden shell known as platform frame.The thermo-physical characteristics, energy performance as well as the hygrometric features of theproposed system were tested in various sites. As regard the formation of condensation, the thermohygrometric analysis proved the absence of such threat over a period of a whole year in all the differentclimates observed.A comparison with a similar XLAM system evidenced that the platform frame system lined internallywith compressed straw offers a 12% reduction in U thermal transmittance, a 22% improvement in YIEperiodic thermal transmittance, and a comparable thermal lag.Moreover, the platform frame system filled with compressed straw allows a cost reduction by 38%compared to the XLAM system.On the whole, the outcomes obtained indicate that the platform frame system with compressed strawoffers a suitable alternative to the XLAM system, above all in the case of buildings of two or three stories.
2018
Compressed straw
Wooden envelope
XLAM
Platform frame
Hygrometric assessment
Energy consumption
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.12318/121158
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