首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Suction stress characteristics in granite red soils and their relationship with the collapsing gully in south China
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Suction stress characteristics in granite red soils and their relationship with the collapsing gully in south China

机译:花岗岩红壤中的吸应力特性及其与南方沟壑区的关系

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The main goal of this research is to study the relationship between the soil suction stress and soil properties within four different soil profiles of collapsing gullies in the hilly granitic region of southern China. Large differences were found in the four soil layers between granite red soils, which are manifested in terms of soil bulk density, porosity, particle composition, clay minerals, micromorphology, organic matter, cation exchange capacity, permeability, oxide and hydraulics properties. The suction stress of the upper soils increases rapidly and almost linearly monotonously with the increase of matric suction, whereas C layers increases rapidly first, followed by a slow increase. The suction stress of the lower soils is significantly smaller than the upper soils under the same matric suction. These findings illustrate that the collapsing gully starts from the lower part of the granite red soil, and finally caused the gravity collapse in the upper soils, which is the main aspect that is different from the other types of soil erosion. Furthermore, suction stress has a very significant correlation with soil properties, with a positive correlation to the fine particle content, iron and aluminum oxide, and a negative correlation to coarse particles. In addition, suction stress can also be explained as being directly proportional to weathering degree. Our research provides a theoretical basis for the mass failures of the granite-derived red soil in southern China.
机译:本研究的主要目的是研究南方丘陵丘陵区坍塌沟渠中的四种不同土壤剖面的土壤吸力和土壤性能之间的关系。在花岗岩红壤之间的四层土层中发现了巨大差异,该花岗岩红色土壤中的散装密度,孔隙率,颗粒组成,粘土矿物质,微晶,有机物质,阳离子交换能力,渗透性,氧化物和液压性能方面。上部土壤的抽吸应力随着测距的增加而迅速,几乎线性地单调,而C层首先迅速增加,然后缓慢增加。下部土壤的吸力应胁迫明显小于同一原料吸力下的上部土壤。这些发现表明,坍塌沟槽从花岗岩红壤的下部开始,最后导致上部土壤中的重力塌陷,这是与其他类型的土壤侵蚀不同的主要方面。此外,抽吸应力与土壤性质具有非常显着的相关性,与细颗粒含量,铁和氧化铝以及与粗颗粒的负相关性的正相关。此外,还可以解释吸力应力作为耐候程度的直接成比例。我们的研究为中国南部花岗岩衍生的红土的大规模故障提供了理论依据。

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