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The physico-chemical properties and structural characteristics of artificial soil for cut slope restoration in Southwestern China

机译:中国西南地区人工挖坡恢复用理化性质与结构特征

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摘要

Cut slopes are frequently generated by construction work in hilly areas, and artificial soil is often sprayed onto them to promote ecological rehabilitation. The artificial soil properties are very important for effective management of the slopes. This paper uses fractal and moment methods to characterize soil particle size distribution (PSD) and aggregates composition. The fractal dimension (D) showed linear relationships between clay, silt, and sand contents, with coefficients of determination from 0.843 to 0.875, suggesting that using of D to evaluate the PSD of artificial soils is reasonable. The bias (CS) and peak convex (CE) coefficients showed significant correlations with structure failure rate, moisture content, and total porosity, which validated the moment method to quantitatively describe soil structure. Railway slope (RS) soil has lower organic carbon and soil moisture, and higher pH than natural slope soil. Overall, RS exhibited poor soil structure and physicochemical properties, increasing the risk of soil erosion. Hence, more effective management measures should be adopted to promote the restoration of cut slopes.
机译:丘陵地带经常是在丘陵地区的建筑工作中产生的,经常在其上喷洒人造土壤以促进生态恢复。人工土壤性质对于有效管理斜坡非常重要。本文使用分形和矩量法来表征土壤粒径分布(PSD)和聚集体组成。分形维数(D)显示出粘土,粉砂和砂含量之间的线性关系,确定系数在0.843至0.875之间,这表明用D评估人造土壤的PSD是合理的。偏置系数(CS)和峰凸系数(CE)与结构破坏率,含水量和总孔隙率显示出显着的相关性,从而验证了用矩量法定量描述土壤结构。铁路边坡(RS)土壤比天然边坡土壤具有较低的有机碳和土壤水分,且pH较高。总体而言,RS表现出不良的土壤结构和理化特性,增加了土壤侵蚀的风险。因此,应采取更有效的管理措施,以促进开挖边坡的恢复。

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