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Geomechanics of large stone structures: a case history from the Washington National Cathedral

机译:大型石材结构的地质力学:华盛顿国家大教堂的案例

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The Washington National Cathedral is one of the largest masonry structures in the USA, and like many of its European Gothic counterparts, it required nearly a century to construct. The design was altered during this period, resulting in greater loadings than were originally anticipated on the soil beneath the foundation. When signs of continuing differential settlement were observed in the early 1990's, the Cathedral approached the US Bureau of Mines (now the National Institute for Occupational Safety and Health (NIOSH)) for assistance in monitoring the movements of the massive towers and walls. An array of dual-axis tiltmeters was installed about 40m above ground level to measure wall and tower inclination, with the data sent over a dedicated phone line to the NIOSH Pittsburgh Research Laboratory for processing. Mechanical gages and string-potentiometers are also being used to measure motion across cracks and joints, and differential pier settlement is being monitored with optical-level surveying. Data have now been collected for almost 7 years, and they show a long-term settlement trend masked by dramatic diurnal and seasonal thermal movements. The paper discusses the major findings of the study, implications for the future of the Cathedral, and conclusions regarding the use of geotechnical monitoring at major national monuments.
机译:华盛顿国家大教堂是美国最大的砖石建筑之一,与许多欧洲哥特式建筑一样,它需要近一个世纪的建造时间。在此期间对设计进行了更改,从而导致比原先在地基下方的土壤上所预期的载荷更大。当在1990年代初观察到持续的差异沉降迹象时,大教堂向美国矿山局(现为美国国家职业安全与健康研究所(NIOSH))寻求协助,以监测大型塔楼和围墙的运动。在地面上方约40m处安装了一系列双轴测斜仪,以测量墙和塔的倾斜度,并将数据通过专用电话线发送到NIOSH匹兹堡研究实验室进行处理。机械量规和弦电位计也被用于测量裂缝和接缝处的运动,并且通过光学水平测量来监测桥墩的沉降。现在已经收集了将近7年的数据,这些数据显示出长期的沉降趋势被白天和季节性的剧烈热运动所掩盖。本文讨论了这项研究的主要发现,对大教堂未来的影响以及有关在主要国家历史古迹中使用岩土工程监测的结论。

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