Insulation materials for the building sector: A review and comparative analysis

建筑围护结构 保温 动态绝缘 热透过率 能源消耗 热阻 热质量 高效能源利用 热桥 生命周期评估 工程类 真空隔热板 环境科学 热的 建筑工程 材料科学 复合材料 经济 图层(电子) 生产(经济) 电气工程 气象学 宏观经济学 物理
作者
Samuele Schiavoni,Francesco D’Alessandro,Francesco Bianchi,Francesco Asdrubali
出处
期刊:Renewable & Sustainable Energy Reviews [Elsevier]
卷期号:62: 988-1011 被引量:784
标识
DOI:10.1016/j.rser.2016.05.045
摘要

The energy consumption of a building is strongly dependent on the characteristics of its envelope. The thermal performance of external walls represents a key factor to increase the energy efficiency of the construction sector and to reduce greenhouse gases emissions. Thermal insulation is undoubtedly one of the best ways to reduce the energy consumption due to both winter heating and summer cooling. Insulation materials play an important role in this scenario since the selection of the correct material, its thickness and its position, allow to obtain good indoor thermal comfort conditions and adequate energy savings. Thermal properties are extremely important, but they are not the only ones to be considered when designing a building envelope: sound insulation, resistance to fire, water vapor permeability and impact on the environment and on human health need to be carefully assessed too. The purpose of the paper is to provide a review of the main commercialized insulation materials (conventional, alternative and advanced) for the building sector through a holistic and multidisciplinary approach, considering thermal properties, acoustic properties, reaction to fire and water vapor resistance; environmental issues were also taken into account by means of Life Cycle Assessment approach. A comparative analysis was performed, considering also unconventional insulation materials that are not yet present in the market. Finally a case study was conducted evaluating both thermal transmittance and dynamic thermal properties of one lightweight and three heavyweight walls, with different types of insulating materials and ways of installation (external, internal or cavity insulation).
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