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The effect of soil texture and organic amendment on the hydrological behaviour of coarse-textured soils

机译:土壤质地和有机改良剂对粗糙结构土壤水文行为的影响

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To gain more insight into the hydrological behaviour of coarse-textured soils, the physical properties of artificially created soil mixtures with different texture were determined. The mixtures were prepared according to the specifications of the United States Golf Association (USGA) for constructing putting greens. In addition, the effect of 10 vol.% organic matter addition was studied. The soil moisture retention and hydraulic conductivity relationships of the different mixtures were determined and their hydrological behaviour was studied using the numerical model SoWaM. Both texture and organic matter addition substantially affected the hydraulic properties. Hydraulic conductivity significantly increased with increasing coarseness while moisture retention decreased. On the other hand, organic matter addition reduced saturated hydraulic conductivity by a factor of 10 to 100 and distinctly increased moisture retention capacity. The amounts of total available water were increased by the addition of organic matter between 144% (slightly coarse texture) and 434% (very coarse texture). Results indicate that the mixtures can contain only 2-16% plant available water and therefore need frequent irrigation to maintain plant growth. Addition of organic matter seems a good solution to reduce the irrigation water requirements but it increases the risk of ponding or runoff because of large reductions in the saturated hydraulic conductivity sometimes to below the rate of 3.6 m/day recommended by the USGA.
机译:为了深入了解粗糙结构土壤的水文行为,确定了具有不同质地的人工创建的土壤混合物的物理性质。混合物是根据美国高尔夫球协会(USGA)的规范制备的,用于建造果岭。另外,研究了添加10体积%有机物的效果。用数值模型SoWaM确定了不同混合物的土壤水分保持力和水力传导率关系,并研究了它们的水文行为。质地和有机物的添加均显着影响水硬性。水力传导率随着粗糙度的增加而显着增加,而水分保持力则下降。另一方面,有机物的添加将饱和水力传导率降低了10到100倍,并且显着提高了保湿能力。通过添加144%(略粗糙)和434%(非常粗糙)之间的有机物,可增加总可用水量。结果表明,这些混合物只能含有2-16%的植物可用水,因此需要经常灌溉以保持植物生长。添加有机物似乎是减少灌溉水需求的好方法,但是由于饱和水力传导率有时会大大降低到USGA建议的3.6 m / day以下,因此增加了积水或径流的风险。

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