Bayarri Vicente, Prada Alfredo, García Francisco
GIM Geomatics, S.L. C/Conde Torreanaz 8, 39300 Torrelavega, Spain.
Polytechnic School, Universidad Europea del Atlántico, Parque Científico y Tecnológico de Cantabria, C/Isabel Torres 21, 39011 Santander, Spain.
Sensors (Basel). 2023 Nov 13;23(22):9153. doi: 10.3390/s23229153.
Integrating geomatics remote sensing technologies, including 3D terrestrial laser scanning, unmanned aerial vehicles, and ground penetrating radar enables the generation of comprehensive 2D, 2.5D, and 3D documentation for caves and their surroundings. This study focuses on the Altamira Cave's karst system in Spain, resulting in a thorough 3D mapping encompassing both cave interior and exterior topography along with significant discontinuities and karst features in the vicinity. Crucially, GPR mapping confirms that primary vertical discontinuities extend from the near-surface (Upper Layer) to the base of the Polychrome layer housing prehistoric paintings. This discovery signifies direct interconnections helping with fluid exchange between the cave's interior and exterior, a groundbreaking revelation. Such fluid movement has profound implications for site conservation. The utilization of various GPR antennas corroborates the initial hypothesis regarding fluid exchanges and provides concrete proof of their occurrence. This study underscores the indispensability of integrated 3D mapping and GPR techniques for monitoring fluid dynamics within the cave. These tools are vital for safeguarding Altamira, a site of exceptional significance due to its invaluable prehistoric cave paintings.
整合包括三维地面激光扫描、无人机和探地雷达在内的地理空间遥感技术,能够生成洞穴及其周边环境的全面二维、二点五维和三维文档。本研究聚焦于西班牙的阿尔塔米拉洞穴岩溶系统,成果是对洞穴内部和外部地形以及附近显著的不连续性和岩溶特征进行了全面的三维测绘。至关重要的是,探地雷达测绘证实,主要的垂直不连续性从近地表(上层)延伸到容纳史前绘画的多色层底部。这一发现表明洞穴内部和外部之间存在有助于流体交换的直接连通,这是一个开创性的揭示。这种流体运动对遗址保护具有深远影响。使用各种探地雷达天线证实了关于流体交换的初步假设,并为其发生提供了确凿证据。本研究强调了综合三维测绘和探地雷达技术对于监测洞穴内流体动力学的不可或缺性。这些工具对于保护阿尔塔米拉至关重要,该遗址因其极其珍贵的史前洞穴壁画而具有非凡意义。