地球物理测量作为揭示小型农业水源集水区地下分层的工具:一个案例研究

J. Jeřábek, D. Zumr
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引用次数: 0

摘要

集水区是景观水文学的基本空间单位,在此范围内进行水平衡估算和水资源管理。集水区的排水区域通常是根据地表地形来划定的,地表地形是用数字高程模型确定的。因此,只隐式地考虑表面上的流。然而,相当一部分雨水通过土壤剖面渗透到地下水中,在地下水中,地质构造控制着排水面积,而不是土壤表面的地形。地表地形型和基岩型流域面积的差异会导致水量平衡计算存在较大差异。本文采用地球物理测量方法-电阻率层析成像(ERT)对捷克共和国中部水源集水区的地下介质分层进行了调查。结果表明,地下地质层的复杂性不能仅由地表地形来估计。虽然浅层会模仿表面的形状,但深层不会。这一发现对水运机制具有重要意义,因为它表明深层排水可能遵循不同的路径,并向其他方向流动,而不是浅层土壤剖面或浅层地下结构中的水。
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GEOPHYSICAL SURVEY AS A TOOL TO REVEAL SUBSURFACE STRATIFICATION AT A SMALL AGRICULTURAL HEADWATER CATCHMENT: A CASE STUDY
Catchment drainage area is a basic spatial unit in landscape hydrology within which the authorities estimate a water balance and manage water resources. The catchment drainage area is commonly delineated based on the surface topography, which is determined using a digital elevation model. Therefore, only a flow over the surface is implicitly considered. However, a substantial portion of the rainfall water infiltrates and percolates through the soil profile to the groundwater, where geological structures control the drainage area instead of the topography of the soil surface. The discrepancy between the surface topography-based and bedrock-based drainage area can cause large discrepancies in water balance calculation. It this paper we present an investigation of the subsurface media stratification in a headwater catchment in the central part of the Czech Republic using a geophysical survey method - electrical resistivity tomography (ERT). Results indicate that the complexity of the subsurface geological layers cannot be estimated solely from the land surface topography. Although shallow layers copy the shape of the surface, the deeper layers do not. This finding has a strong implication on the water transport regime since it suggests that the deep drainage may follow different pathways and flow in other directions then the water in shallow soil profile or shallow subsurface structures.
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