Investigating the Historical Building Materials with Spectroscopic and Geophysical Methods: Case Study – Mardin Castle

Lale Karataş, Aydın Alptekin
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引用次数: 4

Abstract

Today, the building materials form the historical buildings are being exposed to various deteriorations increasingly due to different causes. Many historical masonry constructions in the world are on the edge of extinction due to the increasing frequency and changing models of material deterioration. The materials as close as possible to the original materials in terms of their chemical compositions and physical properties are required in the reconstruction and maintenance of the buildings that have historical importance. In addition, the properties of the materials used in the historical buildings are generally not known with a sufficient accuracy. This causes misapplications in case of emergencies, and also may lead to future potential greater damages on the building. The lack of data regarding the engineering properties of these buildings causes long-term damages on the buildings due to inappropriate conservation methods and materials. Therefore, it is necessary to investigate the properties of certain materials for application in the renewal of the historical buildings. Within this context, in this study the construction materials of Mardin Castle, which is located in Mardin Province, Turkey and existing for centuries as the symbol of the city, are investigated and its properties are reached. Experimental research methods were used in the study. Primarily, the castle structure was examined on-site by field study and sampling was carried out from the areas determined. The samples were analysed via various spectroscopic and geophysical methods, and various findings were achieved. Relatively variable and high levels of salinization were determined in the findings regarding the average values in stone samples of Mardin Castle’s Fortification Walls. Results of the research document the conservation status regarding Mardin Castle and provide an experimental base and also a theoretical support for the conservation of historical buildings in Turkey; and present indicative suggestions to establish conservation schemes of the historical buildings.
用光谱和地球物理方法研究历史建筑材料:以马丁城堡为例
今天,由于各种原因,历史建筑的建筑材料越来越多地受到各种各样的破坏。世界上许多历史砌体建筑由于材料劣化的频率日益增加和模式的变化而濒临灭绝。在重建和维护具有重要历史意义的建筑时,需要在化学成分和物理特性方面尽可能接近原始材料。此外,历史建筑所使用的材料的性能一般也没有足够的准确性。在紧急情况下,这会导致误用,也可能导致未来对建筑物的潜在更大损害。由于缺乏有关这些建筑工程性能的资料,由于保护方法和材料的不适当,对建筑造成了长期的破坏。因此,有必要对某些材料的性能进行研究,以应用于历史建筑的更新。在此背景下,本研究对马尔丁城堡的建筑材料进行了研究,马尔丁城堡位于土耳其马尔丁省,作为城市的象征存在了几个世纪,并达到了其属性。本研究采用实验研究方法。首先,通过实地研究对城堡结构进行了现场检查,并从确定的区域进行了采样。通过各种光谱和地球物理方法对样品进行了分析,并获得了各种发现。相对可变和高水平的盐碱化是在调查结果中确定的关于马丹城堡防御墙的石头样本的平均值。研究结果记录了马尔丁城堡的保护现状,为土耳其历史建筑的保护提供了实验基础和理论支持;并提出建立历史建筑保护方案的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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