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Moisture monitoring of historical buildings by long-period temperature measurements

机译:长期温度测量的历史建筑的水分监测

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A method is proposed for the moisture analysis of buildings, based on the combination of complementing monitoring techniques. A periodic IR scanning of the whole surface is combined with a visual recording, plus an automatic data logging of the environmental conditions. Thermography allows imaging the temperature pattern, while a long history of thermal hygrometric parameters come available for the fixed measurements at selected points. The used equipment is relatively simple and competitive. A very few thermographic surveys are integrated by several periodic scanning, using an IR pyrometer. The visual monitoring is of great help in rendering results and documenting surface appearance at different seasons. About 20 probes are sufficient to measure thermal hygrometric parameters and evaluate the condensation risk. A review of algorithms for the moisture testing by thermography and guidelines for the identification of the moisture sources in thick historical buildings is presented. A numerical model has been adopted to simulate the internal thermo-hygrometrical conditions. In such a way, data acquired could be significantly extended and gaps occurred during the data logging has been filled. As case study was identified a North-East Italian ancient church (Duomo of Venzone) destroyed by an earthquake in 1976 and fully restored under the patrol of the cultural heritage authority. A one year round monitoring of the church and tour, according to the proposed procedure, allowed to control the moisture levels both in time and space. This endorsed to identify the sources of the water flux and therefore to suggest the repairing guidelines. Experimental results are reported.
机译:基于补充监测技术的组合,提出了一种用于建筑物的水分分析的方法。整个表面的周期性IR扫描与视觉记录相结合,以及环境条件的自动数据记录。热成像允许成像温度模式,而热湿度参数的长历史可用于所选点的固定测量。二手设备相对简单,竞争。使用IR高温计通过多个定期扫描集成了很少的热度摄影。视觉监测在不同季节的渲染结果和记录表面外观方面具有很大的帮助。约20个探针足以测量热湿度测定参数并评估冷凝风险。介绍了热成像探测算法的综述,并识别厚历史建筑中的水分源的准则。已经采用了数值模型来模拟内部热潮流条件。以这样的方式,可以显着扩展所获取的数据,并且已经填充了在数据记录期间发生的间隙。如案例研究被确定了由1976年地震摧毁的东北意大利古教堂(Venzone的Duomo),并在文化遗产权的巡逻下完全恢复。根据所提出的程序,一年的教会和旅游监测,允许在时间和空间中控制水分水分。这是识别水通量的来源,因此建议修复准则。报道了实验结果。

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