Bio-based buildings, including massive wood structures and timber-frame constructions, offer high efficiency in winter, providing excellent thermal comfort with minimal energy demand for heating. This study investigates hygrothermal measurements conducted on real-scale walls constructed using innovative multi-layer panels created from functional bio-composites. These panels can be manufactured using recycled waste from the production site and wood waste from construction demolition. The experimental facility is a test hut constructed in Latvia, with humidity and temperature sensors strategically placed within the walls. An analysis of the results for three different wall configurations is undertaken to verify the monitoring and offer a first comparison of the construction systems. The results enable a better understanding of hygrothermal interactions within the walls under real outdoor climate.

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Advancing Sustainable Building Technologies: A Focus on Bio-Based Multi-Layer Panels and Real-Scale Hygrothermal Analysis

  • Maya Hajj Obeid,
  • Pauls P. Argalis,
  • Maris Sinka,
  • Diāna Bajāre,
  • Mickael Pailha,
  • Monika Woloszyn

摘要

Bio-based buildings, including massive wood structures and timber-frame constructions, offer high efficiency in winter, providing excellent thermal comfort with minimal energy demand for heating. This study investigates hygrothermal measurements conducted on real-scale walls constructed using innovative multi-layer panels created from functional bio-composites. These panels can be manufactured using recycled waste from the production site and wood waste from construction demolition. The experimental facility is a test hut constructed in Latvia, with humidity and temperature sensors strategically placed within the walls. An analysis of the results for three different wall configurations is undertaken to verify the monitoring and offer a first comparison of the construction systems. The results enable a better understanding of hygrothermal interactions within the walls under real outdoor climate.