...
首页> 外文期刊>Journal of Applied Geophysics >Geophysical fingerprints of shallow cultural structures from microgravity and GPR measurements in the Church of St. George, Svaty Jur, Slovakia
【24h】

Geophysical fingerprints of shallow cultural structures from microgravity and GPR measurements in the Church of St. George, Svaty Jur, Slovakia

机译:斯洛伐克Svaty Jur的圣乔治教堂的微重力和GPR测量得到的浅层文化结构的地球物理指纹

获取原文
获取原文并翻译 | 示例
           

摘要

Recording of the historic edifice using the state-of-the-art geodetic and geophysical techniques brings easier visualisation in form of a three-dimensional (3D) model, thus allowing better understanding of its historical construction by the public and non-experts. We have applied this approach at the Church of St. George, one of the most significant religious buildings in south-western Slovakia, which dominates a silhouette of the town Svary Jur. The geodetic survey allowed to record the actual state of the church. The church exterior was surveyed using a total station. Due to the intricate shape of the interior components of the church, it was decided to use a terrestrial laser scanner to generate the point cloud data, which were processed into floor plan, elevations, sectional 2D drawings and 3D model. The geophysical survey was carried out in the interior of the church in order to identify potential subsurface anthropogenic structures. Microgravity and ground penetrating radar (GPR) methods were selected as the most effective geophysical tools for such task. In microgravity data processing we focused on the calculation and removal of the gravitational effects of the building masses. The main negative gravity anomalies of interest in the nave, which also have been confirmed by GPR measurements, are interpreted as medieval crypts. Another very important outcome of the geophysical survey is the discovery of the west wall foundations of the oldest Romanesque construction. From each geophysical data acquired we derived 3D polygonal models, which are compared to achieve more realistic picture of the subsurface structures. Verification of these structures by means of archaeological excavation has not been carried out yet. (C) 2016 Elsevier B.V. All rights reserved.
机译:使用最先进的大地测量和地球物理技术记录历史建筑,可以更轻松地以三维(3D)模型的形式进行可视化,从而使公众和非专业人员都能更好地了解其历史建筑。我们已经在斯洛伐克西南部最重要的宗教建筑之一圣乔治教堂采用了这种方法,该教堂主导着Svary Jur镇的轮廓。大地测量允许记录教堂的实际状态。使用全站仪对教堂外部进行了调查。由于教堂内部组件的形状复杂,因此决定使用地面激光扫描仪生成点云数据,然后将其处理为平面图,立面图,2D剖面图和3D模型。为了确定潜在的地下人为结构,在教堂内部进行了地球物理调查。微重力和探地雷达(GPR)方法被选为最有效的地球物理工具。在微重力数据处理中,我们专注于建筑质量的重力效应的计算和消除。中殿感兴趣的主要负重力异常,也已通过GPR测量得到证实,被解释为中世纪隐窝。地球物理调查的另一个非常重要的成果是发现了最古老的罗马式建筑的西墙基础。从获得的每个地球物理数据中,我们得出了3D多边形模型,将其进行比较以实现地下结构的更逼真的图像。尚未通过考古发掘对这些结构进行验证。 (C)2016 Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号