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Monitoring the Deterioration of Masonry Relics at a UNESCO World Heritage Site

机译:监测联合国教科文组织世界遗产砌体遗物的恶化

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摘要

Since 2015, six typical masonry cultural relics around the China's UNESCO World Heritage Site - the West Lake Cultural Landscape of Hangzhou have been systematically monitored from three aspects: deterioration patterns, physical and mechanical properties, and the changes of the micro-environment, using non-destructive testing equipment like optical microscope, ultrasonic pulse wave, Schmidt hammer, surface roughness tester, thermohygrometers, rain gauges, air quality monitors and so on. High-throughput sequencing technology had also been used to study distribution and diversity of microorganisms on the surface of masonry. Results show that the deterioration of relics can be reflected by their physical and mechanical properties, comprehensive evaluation of the heritage's health state can be made through long-term continuous monitoring. It also found that different deterioration pattern will occur with different types of materials or in different preservation conditions, marble artifacts which completely exposed outdoors tends to significant degradation in just five years due to temperature fluctuations and acid rain. Besides, Microorganisms' growth and propagation correlate positively with environmental conditions. As a case study, this paper described in detail the whole process of monitoring the deterioration of masonry relics at a UNESCO World Heritage sites, which may provide some references for researchers in similar fields.
机译:自2015年以来,中国联合国教科文组织世界遗产六个典型的砌体文物 - 杭州西湖文化景观从三个方面系统地监测:恶化模式,物理和机械性能,以及微环境的变化,使用非 - 破坏性测试设备如光学显微镜,超声波脉冲波,施密锤,表面粗糙度测试仪,热敏仪,雨量仪,空气质量监视器等。高通量测序技术还被用来研究砌体表面的微生物分布和多样性。结果表明,遗物的恶化可通过其物理和机械性能反映,遗产的综合评价可以通过长期连续监测进行。它还发现,不同类型的材料或在不同的保存条件下,在不同类型的保存条件下,户外完全暴露的大理石厂将发生不同的劣化模式,这是由于温度波动和酸雨的几年内发生重大降解。此外,微生物的生长和繁殖与环境条件正相关。作为一个案例研究,本文详细介绍了监测联合国教科文组织世界遗产在联合国教科文组织世界遗产的恶化的整个过程,这可能为类似领域的研究人员提供一些参考。

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