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Mapping complex soil patterns with multiple-point geostatistics

机译:使用多点地统计法绘制复杂的土壤模式

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The commonly used variogram function is incapable of modelling complex spatial patterns associated with repetitive, connected or curvilinear features, because it is a two-point statistic. Because this was strongly limiting to petroleum- and hydrogeologists, they developed multiple-point geostatistics (MPG), an approach that replaces the variogram by a training image (TI). However, soil scientists also face complex spatial patterns and MPG might be of use to them as well. Therefore, this paper aims to introduce MPG to soil science and demonstrate its potential with a case study of polygonal subsoil patterns caused by Weichselian periglacial frost cracks in Belgium. A high-resolution proximal soil sensing survey provided a reference image from which a continuous (655 sensor data) and a categorical (100 point observations) dataset were extracted. As a continuous TI, we used the geophysical data of another part of the field, and as categorical TI we used a classified photograph of an ice-wedge network in Alaska. The resulting MPG maps reconstructed the polygonal patterns very well and corresponded closely to the reference image. Consequently, we identify MPG as a promising technique to map complex soil patterns and suggest that it should be added to the pedometrician's toolbox.
机译:常用的变异函数无法建模与重复,连接或曲线特征相关的复杂空间模式,因为它是两点统计。由于这仅限于石油和水文地质学家,因此他们开发了多点地统计学(MPG),该方法用训练图像(TI)代替了变异函数。但是,土壤科学家也面临着复杂的空间格局,MPG可能也对他们有用。因此,本文旨在将MPG引入土壤科学,并以比利时Weichselian沿冰期霜冻裂缝引起的多边形底土模式为例,论证MPG的潜力。高分辨率近端土壤传感调查提供了参考图像,从该参考图像中提取了连续的(655个传感器数据)和分类的(100点观测)数据集。作为连续的TI,我们使用了油田另一部分的地球物理数据,作为分类的TI,我们使用了阿拉斯加冰楔网络的分类照片。生成的MPG贴图很好地重建了多边形图案,并与参考图像非常接近。因此,我们认为MPG是绘制复杂土壤模式的有前途的技术,并建议应将其添加到儿科医生的工具箱中。

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