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Role of the urban plant environment in the sustainable protection of an ancient city wall

机译:城市植物环境在古城墙体可持续保护中的作用

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摘要

Cultural heritage sites are exposed to urban environmental phenomena and various forms of deterioration that degrade their historical and cultural value. As an important element, plant landscaping can be a potential regulator of the microenvironment, mitigating the adverse effect of the local climate to cultural heritage. The influence of evergreen trees on the weathering deterioration of the Nanjing City Wall was studied and evaluated through field measurements and numerical modeling. A two-dimensional hygrothermal 'City Wall-plant' model was developed to simulate the shaded and unshaded surfaces. The results showed that compared to the unshaded case, the shaded surface showed smaller temperature fluctuations with an increase in the minimum temperature by 0.5 degrees C - 0.8 degrees C, smaller water content fluctuations with the standard deviation decreasing by 0.017 kg/kg at the height of 0.15 m, and a lower evaporation rate by 8 - 18%. This means that evergreen trees can effectively reduce the risk of deterioration on wall surfaces due to freeze-thaw cycles, efflorescence, and subflorescence. These findings provide the theoretical basis for the sustainable preservation of sites with cultural heritage.
机译:文化遗产出位于城市环境现象和各种形式的恶化,以降低历史和文化价值。作为一个重要的元素,植物景观可以是微环境的潜在调节因素,减轻当地气候对文化遗产的不利影响。通过现场测量和数值模拟研究了常绿树对南京城墙风化恶化的影响。开发了一种二维湿热的“城市墙厂”模型来模拟阴影和未体内的表面。结果表明,与未阴影的情况相比,阴影表面显示出较小的温度波动,最小温度升高0.5摄氏度 - 0.8℃,较小的水含量波动,标准偏差在高度下降0.017kg / kg 0.15米,较低的蒸发速率为8-18%。这意味着由于冻融循环,风化和骨光,常绿树可以有效地降低壁表面上劣化的风险。这些调查结果为具有文化遗产的可持续保存遗址提供了理论依据。

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