气候变化对建筑围护结构设计的影响:抗霉菌性能

K. Gradeci, A. Nocente, N. Labonnote, P. Rüther
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引用次数: 1

摘要

. 霉菌生长是一种生物劣化现象,危害建筑围护结构的完整性、功能性和耐久性。耐生物变质的性能取决于外壳内的临界湿热条件。这些条件取决于建筑围护结构的配置和气候暴露,考虑到室外天气和室内环境的条件。这些关键条件可能会随着气候变化而加剧,因此,需要修改和适应围护结构。在为即将到来的建筑围护结构设计制定指导方针时,需要了解围护结构选择的影响。参数分析是研究输入参数如何影响预期结果的有力来源。鉴于此,对三种建筑围护结构的抗霉菌性能进行了参数分析。在性能评估中,气候变化的影响通过采用历史和未来气候变化情景来考虑,其中全球气候温度变化预测为3.5℃。对当前建筑围护结构设计准则提出建议,以进行抗霉菌生长的性能评估。
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Impact of Climate Change in Building Envelope Design: The Performance to Withstand Mould Growth
. Mould growth is a biodeterioration phenomenon that jeopardizes the integrity, functionality and durability of building envelopes. The performance to withstand biodeterioration depends on the critical hygrothermal conditions inside the envelope. These conditions are subject to the configuration of building envelopes, and climate exposure, accounting for both the outdoor weather and indoor environments' conditions. These critical conditions are likely to intensify in response to the changing climate, and hence, modification and adaptation of the envelopes' configuration will be required. An understanding of the implications of envelope configurations' choices is required to set up guidelines for forthcoming building envelope design. Parametric analyses are a potent source of insight to investigate how the input parameters influence the desired outcome. In light of this, a parametric analysis is carried out to investigate the performance of three building envelopes to withstand mould growth. The impact of climate change in the performance evaluation is accounted for by employing both historic and future climate change scenarios in which the global climate temperature change is forecast to be 3.5 o C. Input parameters related to the simulation of mould growth are also investigated. Recommendations to current building envelope design guidelines are drawn for the performance evaluation to withstand mould growth.
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