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首页> 外文期刊>Engineering Geology >Description of the weathering states of building stones by fractal geometry and fuzzy inference system in the Olba ancient city (Southern Turkey)
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Description of the weathering states of building stones by fractal geometry and fuzzy inference system in the Olba ancient city (Southern Turkey)

机译:通过分形几何和模糊推理系统描述奥尔巴古城(土耳其南部)中建筑石材的风化状态

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摘要

Applying an engineering geology research to historical places under conservation is very difficult because of sampling restrictions. In order to overcome this difficulty, some non-destructive methods have been used to assess the weathering degrees of the building stones. For this purpose, intensive field studies including the Schmidt hammer test, development and application of a simple visual classification and photograph shootings for fractal geometry have been carried out. A total of 114 blocks were employed during the field studies. With increasing the weathering, the Schmidt hammer values and the fractal dimensions of the blocks systematically decrease. In the final stage of the study, a fuzzy inference system to quantify the weathering degree of the building stones have been constructed. The performance of the inference system is assessed by various methods and the results show that this fuzzy inference system produces plausible results and has a higher prediction capacity. Combination of the various employed methods provides a non-destructive and a simple methodology for the description of the weathering states of the building stones. In this study, the advantages of fractal geometry are considered because its main advantage is to analyze the scale invariance. However, to provide a second check on the weathering descriptions of the blocks, the Schmidt harness is utilized. The approach can be applied on the determination of weathering states of building stones and blocky rock masses.
机译:由于采样限制,将工程地质研究应用于受保护的历史场所非常困难。为了克服该困难,已经使用一些非破坏性方法来评估建筑石材的风化程度。为此,已经进行了广泛的现场研究,包括施密特锤试验,简单视觉分类的开发和应用以及分形几何的照片拍摄。在实地研究中总共使用了114个模块。随着风化作用的增加,施密特锤数值和砌块的分形尺寸会系统地减小。在研究的最后阶段,建立了一个模糊推理系统来量化建筑石材的风化程度。通过多种方法对推理系统的性能进行了评估,结果表明该模糊推理系统产生了合理的结果,具有较高的预测能力。各种采用的方法的组合为描述建筑石材的风化状态提供了一种非破坏性的简单方法。在本研究中,考虑了分形几何的优点,因为它的主要优点是分析尺度不变性。但是,为了对块的风化描述进行第二次检查,使用了施密特线束。该方法可用于确定建筑石材和块状岩体的风化状态。

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