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Evaluation of soil conservation technologies from the perspective of selected physical soil properties and infiltration capacity of the soil

机译:从选定的土壤物理性质和土壤入渗能力的角度评价土壤保护技术

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This paper evaluates different technologies of soil cultivation (conventional and minimization) in terms of physical properties and water regime of soils, where infiltration of surface water is a major component of subsurface water. Soil physical properties (the current humidity, reduced bulk density, porosity, water retention capacity of soil, pore distribution and soil aeration) is determined from soil samples taken from the organic horizon according to standard methodology. To observe the infiltration characteristics of surface layers of topsoil, the drench method (double ring infiltrometers) was used. For the evaluation of field measurements of infiltration, empirical and physically derived equations by Kostiakov and Philip and the three-parameter Philip-type equation were used. The Philip three-parameter equation provides physical based parameters near the theoretical values, a good estimation of saturated hydraulic conductivity iKs/i and sorptivity iC/isubi1/i/sub. The parameter iS/i of Philip’s equation describes the real value of the sorptivity of the soil. Experimental research work on the experimental plots H. Mezi?í?ko proceeded in the years 2005–2008.
机译:本文根据土壤的物理性质和水分状况评估了土壤耕作的不同技术(常规和减量),其中地表水的渗透是地下水的主要组成部分。土壤物理特性(当前湿度,降低的堆积密度,孔隙率,土壤保水能力,孔隙分布和土壤通气)是根据标准方法从有机层采集的土壤样品确定的。为了观察表土表层的入渗特性,采用了浸入法(双环渗透计)。为了评估渗透的现场测量结果,使用了Kostiakov和Philip的经验公式和物理公式以及三参数Philip型公式。菲利普三参数方程式提供了接近理论值的基于物理的参数,很好地估计了饱和导水率 Ks 和吸水性 C 1 。菲利普方程的参数 S 描述了土壤吸附性的真实值。 H. Mezi?íko的实验地块的实验研究工作于2005–2008年进行。

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