利用三维激光扫描技术重建晚期哥特式网状拱顶的设计原理

Olaf Huth
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摘要

准确了解设计和建造拱顶所依据的原则,以及在建造过程中如何实施这些原则,不仅是将拱顶保存为古迹的决定性基础。这些原则还提供了有关拱顶形状发现和建造技术的信息。目前的承重行为也可以追溯到某些前提条件。本文以位于路德施塔特艾斯莱本的圣彼得和保罗教堂中的晚期哥特式网状拱顶为例,展示了如何借助已知的监测方法、测速仪和地面三维(3D)激光扫描精确推导出拱顶的设计和建造原理。逆向工程的结果涉及哥特式晚期相关设计原则的应用,如主拱或保持拱顶棱线交叉高度的规划规范。由于建造时建筑工艺的手工性质,拱顶的个别部分很可能与这些规则有更大的偏差。此外,我们还探讨了这些明显的规则偏差可能是项目层面(从规划到执行)的不足所造成的。
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Reconstruction of design principles of a late Gothic net vault using 3D laser scanning
Precise knowledge of the principles according to which vaults were designed and constructed and how they were implemented in construction not only forms a decisive basis for their preservation as monuments. These principles also provide information about the vaults shape finding and technology of their construction. The load-bearing behavior in its current state can also be traced back to certain premises. Using the example of the late Gothic net vault in the St. Peter and Paul church in Lutherstadt Eisleben, this article shows how design and construction principles of vaults can be precisely deduced with the help of known monitoring methods, tachymetry, and terrestrial three-dimensional (3D) laser scanning. The results of reverse engineering refer to the application of design principles that are relevant in the late Gothic period, such as the principal arch or the plan specifications for maintaining the heights of the ribbed intersections of figured vaults. Due to the artisanal nature of the building process at the time of their construction, individual segments of the vaults may well deviate more significantly from these rules. The fact that these apparent rule deviations may be responses to inadequacies at the project level, from planning to execution, is also explored.
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