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Development and Evaluation of Relative Relief Based Soil Thickness Model: A Comparative Study in Hilly Terrain, South Korea

机译:相对浮雕的土壤厚度模型的开发与评价:韩国丘陵地球的比较研究

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摘要

Soil thickness is a major parameter to better understand slope stability, surface erosion, groundwater storage, and vegetation growth. In this study, the main focus is the development and application of a relative relief (RR)-based spatial soil thickness model. Intensive field works were also carried out to gather ground-truthing soil thickness data using traditional drilling and excavation methods. The spatial distribution of soil thickness obtained from the RR model was validated with the results of the field measurements, and compared with the predictions derived from S and multiple linear regression (MLR) models, which are already known in the literature. In this study, we tested how raster resolutions (5, 10, 20, 30, 50, 60 and 90 m) influence the spatial prediction of soil thickness. Based on the comparison between the predicted soil thickness and the measured soil thickness, a map of 10 m resolution contributed reasonable delineation of soil thickness over the study area. A comparison of the predicted results was performed using the agreement coefficient (AC) which showed that the RR model has a better predictive ability (AC = 0.970) than the S (AC = 0.945) and MLR (AC = 0.710) soil thickness models. The results indicate that an adjustment to the soil thickness and spatial resolution can significantly improve the modelling efficiency.
机译:土壤厚度是更好地了解边坡稳定性,表面侵蚀,地下水储存和植被生长的主要参数。在这项研究中,主要重点是开发和应用相对浮雕(RR)的空间土厚度模型。还采用了传统钻井和挖掘方法收集了磨碎的土壤厚度数据。从RR模型获得的土壤厚度的空间分布验证了现场测量结果,并与来自文献中已知的S和多个线性回归(MLR)模型的预测相比。在这项研究中,我们测试了光栅分辨率(5,10,20,30,50,60和90米)如何影响土壤厚度的空间预测。基于预测的土厚度与测量的土厚度之间的比较,10米的地图可以合理地描绘研究区域的土壤厚度。使用协议系数(AC)进行预测结果的比较,该系数显示RR模型具有比S(AC = 0.945)和MLR(AC = 0.710)的土壤厚度模型更好的预测能力(AC = 0.970)。结果表明,对土厚度和空间分辨率的调整可以显着提高建模效率。

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