通过非破坏性技术对非同位素盐气候变化的描述 绘制地图 使用GIS环境
Miguel Gomez-Heras1, Laura López-González2, María Teresa Gil-Muñoz3
1Departamento de Geología y Geoquímica, Universidad Autónoma de Madrid, 28049 Madrid, Spain.
Sensors (Basel, Switzerland)
|May 11, 2024
概括
建筑遗产中的盐腐蚀是异构的,面向南的墙壁显示出较低的机械稳定性. 这些侧面的过热加快了盐的结晶,影响了建筑物的完整性.
科学领域:
- 遗产保护科学 遗产保护科学
- 材料科学 是一种材料科学.
- 地理信息学是一种地理信息学.
背景情况:
- 建筑遗产的保护需要了解结构/物质特征,并使用信息系统.
- 摄影测量和GIS使得具有材料数据层的详细,地理参考的数字高度模型成为可能.
研究的目的:
- 介绍圣玛丽亚·波纳瓦尔修道院门的机械特征和盐腐蚀形式.
- 绘制和结合材料特性,以获得机械稳定性指数 (MSI).
- 为了确定墙壁衰变是否取决于方向.
主要方法:
- 用于数字海拔模型和GIS数据集成的图谱学.
- 对岩石强度进行现场非破坏性测试 (超声脉冲速度,Leeb硬度).
- 采用地图代数来组合数据并导出MSI.
主要成果:
- 发现盐的腐蚀是异构的,面向南方的空心侧显示较低的MSI.
- 面向南方的相对过热会增强盐的结晶效应.
- 通过增强的盐结晶,促进了epsomite和hexahydrite之间的相变.
结论:
- 导向和热条件显著影响岩石遗产中的盐腐蚀模式.
- 集成的光谱和GIS与现场测试提供了有效的工具,用于遗产材料评估.
- 不同类型的盐腐蚀需要针对不同建筑方位量身定制的保护策略.
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