首页> 外文OA文献 >Combination of hydro-geophysical methods for delineation of characteristic structures in subsoil
【2h】

Combination of hydro-geophysical methods for delineation of characteristic structures in subsoil

机译:用于划定地基特征结构的水文地球物理方法的组合

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

All terrestrial environmental processes involve the soil including hydrological, geological, meteorological, ecological and anthropological factors. The stress on natural soils increases significantly with agricultural and urban land use as a consequence of the world‘s growing population. This leads among others to deforestation and soil sealing and consequently to the decrease of natural habitats and resources. Thus, protection and preservation of soil and the maintaining and avoiding of negative affects from land-use change marks is a challenge for the policy, agricultural economics, and the geosciences.udA perspective for maintaining and avoiding extensive and destructive land use is given by the optimization of current land use. Therefore reliable information of soil and subsoil properties are needed. However, direct analysis of crucial soil properties, e. g. grain size or soil moisture is still time consuming and costly, and provides only single point information. But in particular soil data for medium and large-scale areas are needed for the assessment of soil development and future-oriented planning.udProximal soil sensing techniques (PSS) offers an opportunity for obtaining data from medium and large–scale areas time and cost efficient. However, all PSS methods response only indirectly to the relevant soil properties and could be affected by several soil properties. Hence, a recent challenge is the improvement of PSS data evaluation and interpretation.udThe presented PhD thesis addresses the improvement of data evaluation and interpretation of the PSS methods electromagnetic induction (EMI) and gamma spectrometry (GS) at three different test sites and three different problems. For each problem an individual adjusted approach was develop, applied and critical discussed.udIn Part I the study consider the moisture distribution at a land slide affected hill slope in Austria by means of EMI. The presented study monitored the temporal, spatial and vertical behavior of soil-moisture distribution at a previously identified dynamic slope area over a period of nine month. By the assumption of relative temporal stability of soil properties, seasonal changes in measured electric conductivity (EC) should originate from soil moisture content. This study also faces the challenge of shifts in absolute EC values resulting from different calibration situation or different EMI devices and provides an opportunity for comparability of different EC data. By this approach an delineation of soil moisture pattern was successful derived. Part I also explores the visualization of temporal changes in three-dimensional subsurface data.udPart II focuses the problem of synthesis and simplification of multilayered input data of a floodplain in Central Germany towards a clear delineation of surface. This study tackle the problem by a K-means cluster algorithm in order to generate a 2dimensional map from the test site that includes the main characteristics from divergent input data. However do the generated cluster partitions really reflect the main characteristics of soil properties? Hence, this study also addressed on the reliability of such cluster maps by validation of independent soil properties such as grain-size, thickness of soil layers, and the color. The results show that not all partitions can be confirmed by independent soil samples; one of three clusters significantly differs from the others, the other two clusters could not confirmed by the considered parameters.udPart III investigates a floodplain of a low-mountain river in Switzerland in order to detect the ancient active stream channels (AAC). This part is subdivided into two approaches; first a 3D subsurface model as a result from the iterative inversion of predicted EMI values was generated. Thereby various electric conductivity maps (EC) were generated by forward modeling and compared with the corresponding measured data. The study use the best fitted input data for the generation of the 3D model. In a second approach a K-means cluster map for the floodplain surface was generated that combines the main characteristics from multilayered subsurface data by synthesis and simplification analogue to Part II. The obtained cluster characterizes different soil conditions, which are indicative for the delineation of AAC.udAlthough developed under specific site conditions all demonstrated approaches offers portability and should be applied in other applications.
机译:所有陆地环境过程都涉及土壤,包括水文,地质,气象,生态和人类学因素。由于世界人口的增长,自然土壤上的压力随着农业和城市土地的使用而大大增加。除其他外,这导致了森林砍伐和土壤封闭,从而导致自然栖息地和资源的减少。因此,保护​​和保护土壤以及保持和避免土地利用变化标志带来的负面影响是对政策,农业经济学和地球科学的挑战。 udA提出了维护和避免广泛和破坏性土地利用的观点。优化当前的土地利用。因此,需要可靠的土壤和下层土壤特性信息。然而,直接分析关键的土壤特性,例如。 G。粒度或土壤水分仍然很耗时且昂贵,并且仅提供单点信息。但是,尤其需要中大型区域的土壤数据来评估土壤发展和面向未来的规划。 ud近距离土壤传感技术(PSS)提供了从中型和大型区域获取时间和成本数据的机会高效。但是,所有PSS方法仅间接响应相关的土壤特性,并且可能会受到几种土壤特性的影响。因此,最近的挑战是改进PSS数据的评估和解释。 ud本博士论文致力于在三个不同的测试地点和三个地点对PSS方法的电磁感应(EMI)和伽马能谱(GS)的数据评估和解释进行改进。不同的问题。对于每个问题,都制定,应用了适用的方法并对其进行了严格的讨论。提出的研究在九个月的时间内监测了先前确定的动态斜坡区域土壤水分分布的时间,空间和垂直行为。根据土壤特性的相对时间稳定性的假设,测得的电导率(EC)的季节性变化应源自土壤水分。这项研究还面临着因不同的校准情况或不同的EMI器件而导致的EC绝对值变化的挑战,并为不同EC数据的可比性提供了机会。通过这种方法,成功地得出了土壤水分模式的轮廓。第一部分还探讨了三维地下数据的时间变化的可视化。 ud第二部分着重于中部德国洪泛平原的多层输入数据的合成和简化问题,以明确地表。这项研究通过K-均值聚类算法解决了该问题,以便从测试站点生成二维地图,其中包括来自不同输入数据的主要特征。但是,生成的簇分区确实反映了土壤特性的主要特征吗?因此,本研究还通过验证独立的土壤特性(例如粒度,土壤层厚度和颜色)来解决此类聚类图的可靠性问题。结果表明,并不是所有的分区都可以通过独立的土壤样本来确认;第三部分研究组之间的差异明显,其他两个研究组则无法通过所考虑的参数进行确认。 ud第三部分研究了瑞士低山河的洪泛区,以探测古老的主动河道(AAC)。这部分分为两种方法:首先,通过对EMI预测值进行迭代反演,生成了3D地下模型。因此,通过正向建模生成各种电导率图(EC),并将其与相应的测量数据进行比较。该研究使用最佳拟合的输入数据来生成3D模型。在第二种方法中,生成泛洪平原表面的K-均值聚类图,该图通过合成和简化类似于第二部分的方法结合了多层地下数据的主要特征。虽然在特定的场地条件下开发了所有已证明的方法,但它们可移植,并应在其他应用中应用。

著录项

  • 作者

    Altdorff Daniel;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

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