气候变化对材料降解的影响:寻找一种可行的气候模式评估方法

Hamed Hedayatnia, N. V. Bossche
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摘要

. 了解气候变化如何加速或减缓物质退化的过程,是评估历史遗产保护适应性方法的第一步。分析气候变化对冻融循环和盐结晶等退化风险评估参数的影响也是考虑减缓措施的关键参数。由于伊朗文化遗产易受气候变化的影响,本文分析了气候变化对温度等基本参数的影响。选择合适的区域气候模式是分析气候变化对遗产影响的第一步,也是最关键的一步。分析了两种不同区域气候模式的输出:ALARO-0-SURFEX模式(比利时根特大学)和REMO模式(HZG-GERICS,德国),以找出哪种模式更适合该区域。因此本研究的重点主要是在评估过程中寻找一种可行的方法进行验证研究,以确定各个模型的可靠性。为了验证模型,将1980-2017年30年的模型数据与观测数据进行了比较。此外,研究了冻融循环等可能对遗产至关重要的气候参数,以确定这些模型在建筑病理学领域的可靠性。
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The Impact of Climate Change on Material Degradation: Finding a Feasible Approach for Climate Model Evaluation
. Understanding how climate change accelerates or slows down the process of material deterioration is the first step towards assessing adaptive approaches for the preservation of historical heritage. Analysis of the climate change effects on the degradation risk assessment parameters like freeze-thaw cycles and salt crystallization is also a key parameter when considering mitigating actions. Due to the vulnerability of cultural heritage in Iran to climate change, the impact of this phenomenon on basic parameters like temperature was analyzed. Choosing an appropriate regional climate model is the first and most crucial step in the analysis of climate change effects on heritage. The outputs of two different regional climate models: the ALARO-0-SURFEX model (Ghent University, Belgium) and the REMO model (HZG-GERICS, Germany) were analyzed to find out which model is more adapted to the region. So the focus of this research is mainly on the evaluation process to find a feasible approach for validation study to determine the reliability of each model. For model validation, a comparison between model data and observations was performed for 30 years from 1980-2017. Besides, some climatic parameters which are likely critical for heritage like freeze-thaw cycles were studied to find out how reliable these models are in the field of building pathology .
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