利用探地雷达在斯洛文尼亚的一个营养型沼泽上描绘泥炭形态

Teja Ceru, Valentina Pezdir, M. Gosar
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摘要

利用探地雷达(GPR)对Šijec泥炭的厚度和形态进行了研究。波克茹卡高原上的Šijec沼泽是欧洲最南端的营养型泥炭地之一。为了测试GPR方法在泥沼地的适用性,我们使用了两种不同的天线,一种是250 MHz的屏蔽天线,另一种是50 MHz的非屏蔽粗糙地形天线(RTA),这是斯洛文尼亚首次进行此类研究。对比应用频率天线和系统的结果,我们发现250 MHz天线的穿透深度不足以探测最深区域的泥炭厚度。此外,在崎岖地形上,由于易于操纵,一般认为无屏蔽50mhz柔性RTA天线(9.25 m长管)更适合。根据13个剖面,在泥炭沼泽中确定了4个凹陷,并创建了3D模型。由探地雷达结果得出的泥炭层与下伏粘土沉积物之间的接触与人工泥炭探测相辅相成。研究结果表明,与传统的测量方法(泥炭探测、取心)相比,探地雷达速度更快,可以提供更多的泥炭地厚度、体积和几何形状的连续信息。
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Using GPR on an ombrotrophic bog in Slovenia to delineate peat morphology
Ground penetrating radar (GPR) was used to study the peat thickness and morphology of the Šijec bog. The Šijec bog on the Pokljuka plateau is one of the southernmost ombrotrophic peatlands in Europe. To test the applicability of the GPR method in peatlands, which was the first study of its kind in Slovenia, we used two different antennas, a 250 MHz shielded and a 50 MHz unshielded Rough Terrain Antenna (RTA). Comparing the results of both applied frequency antennas and systems, we found that the penetration depth of the 250 MHz antenna was not sufficient to detect the peat thickness in the deepest areas. In addition, on the rough terrain, the unshielded flexible 50 MHz RTA antenna (9.25 m long tube) was generally found to be more suitable due to its easier maneuvering. Based on 13 profiles, four depressions were identified within the peat bog and a 3D model was created. The contact between the peat layer and underlying clay sediments derived from the GPR results was complemented with manual peat probing. The results of the study show that GPR is faster and provides larger and continuous information on the thickness, volume, and geometry of peatland compared to conventional surveying methods (peat probe, coring).
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