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首页> 外文期刊>Soil & Tillage Research >Effect of soil compaction on hydraulic properties of two loess soils in China.
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Effect of soil compaction on hydraulic properties of two loess soils in China.

机译:土壤压实对中国两种黄土的水力特性的影响。

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摘要

Soil compaction affects hydraulic properties, and thus can lead to soil degradation and other adverse effects on environmental quality. This study evaluates the effects of three levels of compaction on the hydraulic properties of two silty loam soils from the Loess Plateau, China. Undisturbed soil cores were collected from the surface (0-5 cm) and subsurface (10-15 cm) layers at sites in Mizhi and Heyang in Shaanxi Province. The three levels of soil compaction were set by increasing soil bulk density by 0% (C0), 10% (C1) and 20% (C2) through compression and hammering in the laboratory. Soil water retention curves were then determined, and both saturated hydraulic conductivity (Ks) and unsaturated hydraulic conductivity were estimated for all of the samples using standard suction apparatus, a constant head method and the hot-air method, respectively. The high level of compaction (C2) significantly changed the water retention curves of both the surface and subsurface layers of the Heyang soil, and both levels of compaction (C1 and C2) changed the curves of the two layers from the Mizhi site. However, the effects of compaction on the two soils were only pronounced below water tensions of 100 kPa. Saturated hydraulic conductivities (Ks) were significantly reduced by the highest compaction level for both sampled layers of the Heyang soil, but no difference was observed in this respect between the C0 and C1 treatments. Ks values decreased with increasing soil compaction for both layers of the Mizhi soil. Unsaturated hydraulic conductivities were not affected by soil compaction levels in the measured water volume ratio range, and the values obtained were two to five orders of magnitude higher for the Mizhi soil than for the Heyang soil. The results indicate that soil compaction could strongly influence, in different ways, the hydraulic properties of the two soils..
机译:土壤压实会影响水力特性,因此会导致土壤退化和对环境质量的其他不利影响。这项研究评估了三个压实水平对来自中国黄土高原的两种粉质壤土的水力特性的影响。从陕西米脂和河阳地区的表层(0-5厘米)和地下(10-15厘米)收集未受扰动的土壤核心。通过在实验室中通过压缩和锤击将土壤容重分别提高0%(C0),10%(C1)和20%(C2),可以设置三个级别的土壤压实度。然后确定土壤保水曲线,并分别使用标准抽吸设备,恒压头法和热风法估算所有样品的饱和水力传导率(Ks)和不饱和水力传导率。高压实度(C2)显着改变了河阳土壤表层和地下层的保水曲线,而两个压实度(C1和C2)都改变了米脂地区的两层曲线。然而,压实对两种土壤的影响仅在水张力低于100 kPa时才明显。最高的压实水平使合阳土壤的两个采样层的饱和水力传导率(Ks)均显着降低,但在C0和C1处理之间在这方面没有发现差异。随着米芝土两层土壤压实度的增加,Ks值降低。在测得的水量比范围内,不饱和水力传导率不受土壤压实度的影响,米脂土壤的值比河阳土壤的值高两至五个数量级。结果表明,土壤压实可以不同方式强烈影响两种土壤的水力特性。

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