Parracha J L, Bartolucci B, Boccacci G, Ogut O, Bartels G, Siani A M, Frasca F, Bertolin C, Mendes M P, Flores-Colen I
CERIS, Department of Civil Engineering, Architecture and Environment, Instituto Superior Técnico, University of Lisbon, Lisbon, Portugal.
LNEC, Department of Buildings, National Laboratory for Civil Engineering, Lisbon, Portugal.
Data Brief. 2023 Sep 26;50:109622. doi: 10.1016/j.dib.2023.109622. eCollection 2023 Oct.
The building sector is responsible for a significant percentage of the energy consumption in Europe. The level of thermal insulation of the building envelope leads to decrease energy consumption, thus contributing towards a sustainable and efficient built environment. As a result, the choice of the most suitable thermal insulation solution to be applied both in new construction and in retrofitting of building facades is fundamental for a satisfactory thermal performance of the building. Nevertheless, the thermal insulation solution should not be chosen considering only the thermal performance, but rather based on a set of performance parameters (i.e., water resistance, fire performance, impact on the environment and human health, among others) and climate-related requirements. This data article includes a dataset on criteria adopted in three European countries (namely Norway, Portugal, and Italy) considering a PESTE analysis (i.e., criteria related to Political, Economic, Social, Technological, and Environmental questions). The main objective was to evaluate the knowledge and perception of people living and/or working in these countries about the use and the performance of thermal insulation solutions in building facades. To this aim a questionnaire was developed within the scope of the EEA Granted EFFICACY research project (November 2022 - February 2023), whose overall objective is to create a database that serves as a reference for the choice of thermal insulation solutions to be applied in building facades for thermal and energy performances optimization. This database contributes to systemize criteria and can be extended by other researchers or professionals in the area, as well as in other countries.
建筑行业在欧洲能源消耗中占比显著。建筑围护结构的保温水平有助于降低能源消耗,从而营造一个可持续且高效的建筑环境。因此,为实现令人满意的建筑热性能,选择最适合用于新建建筑和建筑外立面翻新的保温解决方案至关重要。然而,选择保温解决方案时不应仅考虑热性能,而应基于一系列性能参数(如耐水性、防火性能、对环境和人类健康的影响等)以及与气候相关的要求。本文包含了关于三个欧洲国家(即挪威、葡萄牙和意大利)采用PESTE分析(即与政治、经济、社会、技术和环境问题相关的标准)的标准数据集。主要目的是评估这些国家中居住和/或工作的人们对建筑外立面保温解决方案的使用和性能的了解与认知。为此,在欧洲经济区资助的EFFICACY研究项目(2022年11月 - 2023年2月)范围内设计了一份问卷,该项目的总体目标是创建一个数据库,作为选择用于建筑外立面以优化热性能和能源性能的保温解决方案的参考。这个数据库有助于规范标准,并且可以被该领域的其他研究人员或专业人士以及其他国家进行扩展。