Modelling and Stability Assessment of the Rock Cliffs and Xrobb l-Ġħaġin Neolithic Structure in Malta

IF 2 0 HUMANITIES, MULTIDISCIPLINARY Heritage Pub Date : 2024-06-03 DOI:10.3390/heritage7060138
George Volanis, Demitrios Galanakis, N. Bolanakis, Emmanuel Maravelakis, Ruben Paul Borg, Georgios E. Stavroulakis
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Abstract

The stability of rock cliffs is a longstanding issue and is of practical significance. This case study demonstrates the application and use of advanced 3D modeling techniques, concentrating on the geological formations of the Xrobb l-Ġħaġin peninsula on the south-east coast of Malta, where the Xrobb l-Ġħaġin Neolithic site is located. In order to utilize a static and dynamic analysis of the investigated scenario, a 3D finite element model (FEM) of the geological formation in which the monument is set had to be created. To this end, 3D scanning, unmanned aerial vehicles (UAVs), and oblique photogrammetry were first used with state-of-the-art commercial packages for mesh reconstruction. As a result, a geometric and finite element model (FEM) was created, suitable for both static and dynamic analysis. In the second stage, a parametric investigation of the material properties of the structural system of the geological substrate was sought. The structural response of the system was evaluated for different loading scenarios assuming nonlinear finite element analysis. Collapse case scenarios were investigated for standard and weakened materials, predicting which components would collapse first and under which case of weakened materials the collapse occurs. Among other aspects, the main novelty of this paper lies in the integrated approach and multidisciplinary paradigm that supplement the available historical knowledge for this specific cultural heritage Neolithic site towards its conservation.
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马耳他岩石峭壁和 Xrobb l-ħaġin 新石器时代结构的建模和稳定性评估
岩石悬崖的稳定性是一个长期存在的问题,具有重要的现实意义。本案例研究展示了先进三维建模技术的应用和使用,主要集中在马耳他东南海岸 Xrobb l-ħaġin 半岛的地质构造上,Xrobb l-ħaġin 新石器时代遗址就位于该半岛上。为了对所调查的情况进行静态和动态分析,必须创建该遗迹所在地质构造的三维有限元模型(FEM)。为此,首先使用了三维扫描、无人驾驶飞行器(UAV)和倾斜摄影测量技术,并使用最先进的商业软件包进行网格重建。因此,创建了一个几何和有限元模型(FEM),适用于静态和动态分析。在第二阶段,对地质基底结构系统的材料特性进行了参数化研究。假定进行非线性有限元分析,对不同加载情况下的系统结构响应进行评估。对标准材料和弱化材料的坍塌情况进行了研究,预测了哪些部件会首先坍塌,以及在哪种弱化材料情况下会发生坍塌。除其他方面外,本文的主要创新之处在于采用了综合方法和多学科范式,补充了新石器时代遗址这一特殊文化遗产在保护方面的现有历史知识。
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来源期刊
Heritage
Heritage Multiple-
CiteScore
2.90
自引率
17.60%
发文量
165
审稿时长
10 weeks
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