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Prediction and validation of soil electromagnetic characteristics for application in landmine detection

机译:地雷检测应用土壤电磁特性的预测与验证

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Factors controlling the distribution and intensity of soil magnetic susceptibility (MS) and electrical conductivity (EC) were investigated. The purpose was to determine the factors to be considered in predicting MS and EC characteristics of soils in landmine-affected areas and in developing effective landmine detection systems and strategies. Results indicate that knowledge of bedrock geology, soil weathering and transportation (wind and water) history is essential to predict soil MS and EC characteristics. These factors determine the distribution, concentration and mineral type (e.g. ferromagnetic and clay minerals) in soil. For example, fluctuating water tables in tropical climates could produce soils rich in ferromagnetic minerals at the surface, even though their source (bedrock) may have low iron content. Also, subsequent weathering may change these minerals to high or low MS values. Although high clay concentrations homogeneously distributed may not produce high soil EC values, a low clay content concentrated in a single layer may produce extremely high EC values. These suggest that bedrock geology, agricultural soil, air photo and airborne geophysical survey maps can be used for predicting soils MS and EC characteristics of landmine-affected areas. Laboratory and surficial geophysical surveys are techniques for use in validation.
机译:研究了控制土壤磁性敏感性(MS)和电导率(EC)的分布和强度的因素。目的是确定在预测地区影响地区的土壤中的MS和EC特征以及开发有效地雷检测系统和策略方面,确定要考虑的因素。结果表明,基岩地质,土风化和运输(风水和水)历史的知识对于预测土壤MS和EC特征至关重要。这些因素决定了土壤中的分布,浓度和矿物型(例如铁磁性和粘土矿物)。例如,即使它们的源(基岩)可能具有低铁含量,热带气候中的水表可能会产生富含铁磁矿物质的土壤。此外,随后的风化可以将这些矿物改变为高或低MS值。尽管均匀分布的高粘土浓度可能不会产生高土壤EC值,但是在单层中浓缩的低粘土含量可以产生极高的EC值。这些表明,基岩地质,农业土壤,空气照片和空中地球物理测量地图可用于预测土壤MS和地区受地区地区的EC特征。实验室和表观地球物理调查是用于验证的技术。

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