Digital microclimate simulation models to support innovative management and preventive conservation processes in cultural sites

M. Pretelli, Leila Signorelli, Maria Antonietta De Vivo
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Abstract

Among the least investigated aspects in historical architecture, one is the microclimatic behaviour linked to the preventive conservation of cultural heritage. This aspect should be studied intensively since it is closely related to any deterioration phenomenon of materials and can have a crucial role in updating management systems of cultural sites. Today the sensors that monitor environmental parameters can transfer data in real time into a continuous monitoring logic (cloud platforms) and this, in addition to the development of software capable of modelling the thermo-hygrometric behaviour of buildings, opens up new lines of research. The authors believe that it represents one of the most promising areas of investigation and capable of offering greater results in terms of preventive and planned measures. This contribution collects an experience recently conducted, financed by the Ministry of University and Research, in one of the most prestigious Italian museums, the National Archaeological Museum of Naples (MANN). The monitoring and modelling methodologies are illustrated, as well as the objectives of the intervention, with a view to a fruition that holds the psycho-physical well-being of staff and visitors and the conservation of heritage as close as possible. The results are closely linked to the pandemic experience, with the secondary objective of risk prevention for people and cultural heritage.
支持文化遗址创新管理和预防性保护过程的数字微气候模拟模型
在历史建筑中,与文化遗产预防性保护相关的微气候行为是研究最少的方面之一。应该对这方面进行深入研究,因为它与材料的任何老化现象都密切相关,在更新文化遗址的管理系统方面可以发挥至关重要的作用。如今,监测环境参数的传感器可以将数据实时传输到连续监测逻辑(云平台)中,再加上能够对建筑物的温湿度行为进行建模的软件的开发,这些都开辟了新的研究方向。作者认为,这是最有前途的研究领域之一,能够在预防和计划措施方面取得更大成果。这篇论文收集了最近在大学和研究部的资助下,在意大利最负盛名的博物馆之一--那不勒斯国家考古博物馆(MANN)开展的一项经验。文中介绍了监测和建模方法,以及干预措施的目标,目的是尽可能地实现工作人员和参观者的身心健康以及遗产保护。这些成果与大流行病的经验密切相关,其次要目标是预防人类和文化遗产的风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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