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One-dimensional compression behavior of a soil with high organic matter content

机译:有机质含量高的土壤的一维压缩行为

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This paper addresses the one-dimensional compression behavior of a highly organic sapric soil in both its natural intact and reconstituted states, based on the results of constant rate of strain and incremental loading odometer tests. The soil investigated contains 40-60% organic matter, comprised mainly of highly processed humic substances, and represents a "transitional" material between inorganic clays and peats. The inorganic portion is entirely finer than 0.075 mm, with over 60% in the clay fraction (<2 μm), which XRD analyses indicate contains smectite and vermiculite. Testing of the soil in its intact state relies on high quality block samples and shows that the natural intact soil displays intermediate behavior between that typical of inorganic soft clays and that observed in peats, in terms of compressibility, hydraulic conductivity, and change in hydraulic conductivity with void ratio. As in the case of peats, the coefficient of consolidation is observed to decrease with increasing stress level and the soil shows a high tendency to creep, with C_a/C_C at the high end of values reported in the literature. Comparison of the compression results for the natural and the reconstituted soil serves to illustrate the degree of structuring of the natural soil, which is found to be consistent with that typical of natural sedimentary inorganic clays.
机译:本文基于恒定应变速率和增量载荷里程表测试的结果,探讨了天然有机状态和复原状态下的高度有机密质土壤的一维压缩行为。所调查的土壤包含40-60%的有机物,主要由高度加工的腐殖质组成,是无机粘土和泥炭之间的“过渡”材料。无机部分完全比0.075 mm细,粘土部分(<2μm)超过60%,XRD分析表明其中含有蒙脱石和ver石。对完整状态土壤的测试依赖于高质量的块状样本,结果表明,在可压缩性,水力传导率和水力传导率变化方面,天然的完整土壤表现出介于无机软粘土和泥炭之间的中间行为。具有空隙率。与泥炭一样,观察到固结系数随应力水平的增加而降低,并且土壤表现出较高的蠕变趋势,其中C_a / C_C处于文献报道的最高值。天然土和再生土的压缩结果的比较用于说明天然土的结构化程度,发现该结构化程度与典型的天然沉积无机粘土的一致。

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