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首页> 外文期刊>Journal of Applied Geophysics >Integrated geophysical methods for the characterisation of an archaeological site (Massenzio Basilica - Roman forum, Rome, Italy)
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Integrated geophysical methods for the characterisation of an archaeological site (Massenzio Basilica - Roman forum, Rome, Italy)

机译:用于描述考古遗址特征的综合地球物理方法(Massenzio Basilica-罗马论坛,罗马,意大利)

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摘要

A geophysical study that involved different techniques was carried out with the aim to improve the knowledge of the archaeological site where the Basilica of Maxentius was founded and to discern individual covered structures (foundations). Vertical Electrical Sounding (VES), seismic refraction and Electrical Resistivity Tomography (ERT) studies were performed in the archaeological site. VES and seismic refraction allowed to characterise the main geological formations of the hill where the Basilica was built and to distinguish the concrete floor and backfilling. Electrical data were processed using different algorithms: their results were compared to appraise the inverted models' robustness. ERT inversion algorithms were used to delineate shape and size of a much more complex structure, that were originally expected from archaeological excavation plan. The results of the commercial program were used as a posteriori information to include them in the algorithm proposed by the authors; the sequential use of the programs defined a processing procedure. The integrated use of different geophysical techniques reduced a great deal the intrinsic ambiguities of each method. Direct explorations (boreholes and archaeological excavations) confirmed the geophysical results.
机译:进行了涉及不同技术的地球物理研究,目的是提高对马克西蒂乌斯大教堂建立所在的考古遗址的了解,并识别单个被遮盖的结构(地基)。在考古现场进行了垂直电测深(VES),地震折射和电阻率层析成像(ERT)研究。 VES和地震折射可以表征建造大教堂的山丘的主要地质构造,并可以区分混凝土地面和回填。使用不同的算法处理电气数据:将其结果进行比较,以评估倒置模型的鲁棒性。 ERT反演算法用于描述考古发掘计划最初期望的更为复杂的结构的形状和大小。商业程序的结果被用作后验信息,以将其包括在作者提出的算法中。程序的顺序使用定义了处理过程。不同地球物理技术的综合使用大大减少了每种方法的固有歧义。直接勘探(钻孔和考古发掘)证实了地球物理结果。

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