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The differences in crown formation during the splash on the thin water layers formed on the saturated soil surface and model surface.


ABSTRACT: Splash is the first stage of a negative phenomenon-soil erosion. The aim of this work was to describe the crown formation quantitatively (as part of the splash erosion) and compare the course of this phenomenon on the thin water film formed on a smooth glass surface and on the surface of saturated soil. The height of the falling water drop was 1.5 m. The observation of the crowns was carried out by high-speed cameras. The static and dynamic parameters of crown formation were analysed. It was found that the crowns formed on the water film covering the saturated soil surface were smaller and the time intervals of their existence were shorter. In addition, the shapes of the crowns were different from those created on the water layer covering the glass surface. These differences can be explained by the slightly different values of surface tension and viscosity of the soil solution, the greater roughness of the soil surface and the lower thickness of the water film on the soil surface.

SUBMITTER: Beczek M 

PROVIDER: S-EPMC5531603 | biostudies-literature | 2017

REPOSITORIES: biostudies-literature

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The differences in crown formation during the splash on the thin water layers formed on the saturated soil surface and model surface.

Beczek Michał M   Ryżak Magdalena M   Sochan Agata A   Mazur Rafał R   Polakowski Cezary C   Bieganowski Andrzej A  

PloS one 20170727 7


Splash is the first stage of a negative phenomenon-soil erosion. The aim of this work was to describe the crown formation quantitatively (as part of the splash erosion) and compare the course of this phenomenon on the thin water film formed on a smooth glass surface and on the surface of saturated soil. The height of the falling water drop was 1.5 m. The observation of the crowns was carried out by high-speed cameras. The static and dynamic parameters of crown formation were analysed. It was fou  ...[more]

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