Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Effects of Vegetation Type on Soil Shear Strength in Fengyang Mountain Nature Reserve, China

View through CrossRef
Shear strength is an important mechanical property of soil, as its mechanical function plays critical roles in reducing land degradation and preventing soil erosion. However, shear strength may be affected by vegetation type through changes in the soil and root patterns. To understand the influences of different types of vegetation on shear strength, the soil shear indices of three typical vegetation types (broad-leaved forest, coniferous broad-leaved mixed forest, and grassland) were studied and evaluated at the Fengyang Mountain Nature Reserve, China. We employed a direct shear apparatus to measure the soil shear resistance index. We quantified the soil porosity, moisture content, and composition of particle size to determine the properties of the soil, and a root scanner was used to quantify the root index. The results revealed that there were significant differences in shear resistance indices at the stand level. Between the three vegetation types, the internal friction angle of the broad-leaved forest was the largest and the cohesion was the smallest. The soil moisture content and porosity of the coniferous broad-leaved mixed forest were higher than those of the broad-leaved forest, and the root volume density (RVD/cm3) of the broad-leaved forest was higher than that of the coniferous and broad-leaved mixed forest and grassland. Structural equation modeling results show that the soil particle size and root characteristics indirectly impacted the soil water content by affecting porosity, which finally affected shear strength. In general, there were significant differences in soil properties and plant root indices between the different stands, which had an impact on soil shear strength.
Title: Effects of Vegetation Type on Soil Shear Strength in Fengyang Mountain Nature Reserve, China
Description:
Shear strength is an important mechanical property of soil, as its mechanical function plays critical roles in reducing land degradation and preventing soil erosion.
However, shear strength may be affected by vegetation type through changes in the soil and root patterns.
To understand the influences of different types of vegetation on shear strength, the soil shear indices of three typical vegetation types (broad-leaved forest, coniferous broad-leaved mixed forest, and grassland) were studied and evaluated at the Fengyang Mountain Nature Reserve, China.
We employed a direct shear apparatus to measure the soil shear resistance index.
We quantified the soil porosity, moisture content, and composition of particle size to determine the properties of the soil, and a root scanner was used to quantify the root index.
The results revealed that there were significant differences in shear resistance indices at the stand level.
Between the three vegetation types, the internal friction angle of the broad-leaved forest was the largest and the cohesion was the smallest.
The soil moisture content and porosity of the coniferous broad-leaved mixed forest were higher than those of the broad-leaved forest, and the root volume density (RVD/cm3) of the broad-leaved forest was higher than that of the coniferous and broad-leaved mixed forest and grassland.
Structural equation modeling results show that the soil particle size and root characteristics indirectly impacted the soil water content by affecting porosity, which finally affected shear strength.
In general, there were significant differences in soil properties and plant root indices between the different stands, which had an impact on soil shear strength.

Related Results

Research on the applicability of regional folk art Fengyang Phoenix Painting from the perspective of humanistic ecology
Research on the applicability of regional folk art Fengyang Phoenix Painting from the perspective of humanistic ecology
The core values of socialism contain a very important content is civilization and harmony, the image of the dragon and phoenix is the mythical totem image of the Chinese nation for...
Observations of the soil particle movement during direct shear tests on soil-geosynthetic interfaces
Observations of the soil particle movement during direct shear tests on soil-geosynthetic interfaces
The shear strength between soil-geosynthetic interface has been well studied by conducting large scale direct shear tests. However, the documents of the development of shear band a...
Ecological soil physics as section of ecological soil science
Ecological soil physics as section of ecological soil science
Nowadays, there is a general penetration of ecology in other related sciences. Soil science is not an exception. To the evidence of this, the works of soil scientists may serve, th...
Impacts of changes in vegetation cover on soil water heat coupling in an alpine meadow of the Qinghai-Tibet Plateau, China
Impacts of changes in vegetation cover on soil water heat coupling in an alpine meadow of the Qinghai-Tibet Plateau, China
Abstract. Alpine meadow is one of the most widespread grassland types in the permafrost regions of the Qinghai-Tibet Plateau, and the transmission of coupled soil water heat is one...
Impact of vegetation control measures on the bedform of braided gravel-bed river
Impact of vegetation control measures on the bedform of braided gravel-bed river
<p>Braiding is among the most dynamic landscape on Earth. It provides diverse habitats for freshwater creatures. Unfortunately, the number of braided rivers is reduci...
Determinants of Cerebrovascular Reserve in Patients with Significant Carotid Stenosis
Determinants of Cerebrovascular Reserve in Patients with Significant Carotid Stenosis
Abstract Introduction In patients with 70% to 99% diameter carotid artery stenosis cerebral blood flow reserve may be protectiv...

Back to Top