石头结构对温度变化的动态反应:对石墙的实验调查
Daniele Pellegrini1, Alberto Barontini2, Nuno Mendes2
1Institute of Information Science and Technologies "A. Faedo", ISTI-CNR, 56124 Pisa, Italy.
Sensors (Basel, Switzerland)
|December 17, 2024
概括
温度显著影响造结构的自然频率,使结构健康监测 (SHM) 变得复杂. 模式形状不受影响,强调需要在SHM中考虑环境因素以准确检测损坏.
科学领域:
- 土木工程 土木工程是指土木工程.
- 结构工程 结构工程
- 材料科学 材料科学 材料科学
背景情况:
- 结构健康监测 (SHM) 对基础设施安全至关重要.
- 温度等环境因素可以模仿结构损坏信号.
- 动态特性 (频率,模式形状) 是结构完整性的关键指标.
研究的目的:
- 实验性地研究温度变化对墙体结构动态的影响.
- 为了区分温度的影响和SHM的实际结构损伤.
- 为了提高壁垒结构损坏检测和维护策略的准确性.
主要方法:
- 在不同的热负荷和边界条件下对墙样本进行实验测试.
- 在不同温度下监测自然频率和模式形状.
- 分析温度,边界条件,应力和动态特性之间的相关性.
主要成果:
- 石头墙壁的自然频率受到温度变化的显著影响.
- 温度对频率的影响与边界条件和应用于应力有关.
- 发现墙的模式形状在很大程度上不受温度变化的影响.
结论:
- 温度是一个关键的环境因素,影响结构的动态行为.
- 对于可靠的损害评估,SHM系统必须考虑温度诱导的频率变化.
- 在SHM中准确的环境补偿可以提高基础设施的安全性和寿命.
相关概念视频
Expansion and Contraction in Masonry Walls
691
Masonry walls are subject to slight expansion and contraction due to variations in temperature and moisture. Thermal movement in masonry is relatively straightforward to measure and plan for. On the other hand, moisture movement poses more of a challenge. New clay masonry units typically absorb water and expand over time under normal environmental conditions. Conversely, new concrete masonry units tend to shrink as they lose the excess moisture acquired during their production process.
To...
To...
691
Masonry in Cold and Hot Weather Conditions
80
In cold weather, masonry construction requires specific precautions to ensure mortar does not freeze before curing, as this can significantly weaken its strength and watertightness. Mortar temperature should be maintained between 60°F and 80°F to support proper hydration and curing. Below 40°F, mortar water must be heated, but should not exceed 120°F as high temperatures can reduce mortar's compressive and bond strength.
Other key practices include keeping masonry units...
Other key practices include keeping masonry units...
80
Thermal Insulation in Masonry Walls
105
In hot, dry climates, the thermal mass of masonry walls can be beneficial, absorbing heat during the day and releasing it at night, thereby stabilizing indoor temperatures. However, in most other climates, additional insulation is necessary to enhance thermal resistance.
External insulation can be applied using an Exterior Insulation and Finish System (EIFS), which involves affixing panels of plastic foam to the wall and covering them with a polymeric stucco reinforced with glass fiber mesh....
External insulation can be applied using an Exterior Insulation and Finish System (EIFS), which involves affixing panels of plastic foam to the wall and covering them with a polymeric stucco reinforced with glass fiber mesh....
105
Mortar Joint Deterioration in Masonry
104
Mortar joint deterioration is a significant concern in masonry structures, with water accumulation in the joints leading to damage from freeze-thaw cycles. The repeated expansion of water during freezing and its melting during thawing develop and propagate cracks in the masonry joints. Eventually, this leads to the spalling of mortar from the joints, loosening masonry units and weakening the structure. The deteriorated mortar joints are also vulnerable to moisture intrusion into the walls.
The...
The...
104
Masonry
416
Masonry, known for its strength, durability, and aesthetic versatility, encompasses construction with solid stone or man-made units like bricks, clay tiles, terra cotta, and concrete blocks, combined to form structures like walls, floors, and arches. These units are placed in a systematic fashion, known as coursing, and are bound together using mortar—a mixture typically made of water, cement, and sand.
The process of building with masonry is hands-on and can be executed with basic tools....
The process of building with masonry is hands-on and can be executed with basic tools....
416
Masonry Loadbearing Walls
100
Masonry load-bearing walls, constructed from materials like brick, stone, or concrete masonry units, serve as a crucial component in building structures by supporting the loads from floors and roofs and transferring them to the foundation. These walls, known for their compressive strength, can be reinforced or unreinforced to suit different building needs, accommodating both the dead and live loads while maintaining safety through lower working stresses compared to the materials' ultimate...
100


