Shear Characteristics of Reinforced Soil of Herb Roots in Loess Area of Northeast Qinghai-Tibetan Plateau
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Shear Characteristics of Reinforced Soil of Herb Roots in Loess Area of Northeast Qinghai-Tibetan Plateau
Bulletin of Soiland Water ConservationVol. 32, Issue 4, Pages: 185-188(2013)
作者机构:
1. 青海大学水利电力学院,青海,西宁,810016
2. 青海大学地质工程系,青海,西宁,810016
3. 中国科学院青海盐湖研究所,青海,西宁,810008
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Published:2013
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ZHANG Xing-ling, HU Xia-song. Shear Characteristics of Reinforced Soil of Herb Roots in Loess Area of Northeast Qinghai-Tibetan Plateau[J]. Bulletin of Soiland Water Conservation, 2013, 32(4): 185-188.
DOI:
ZHANG Xing-ling, HU Xia-song. Shear Characteristics of Reinforced Soil of Herb Roots in Loess Area of Northeast Qinghai-Tibetan Plateau[J]. Bulletin of Soiland Water Conservation, 2013, 32(4): 185-188.DOI:
Shear Characteristics of Reinforced Soil of Herb Roots in Loess Area of Northeast Qinghai-Tibetan Plateau
To study the shear characteristics of the soil reinforced with herb roots
annual plant Achnatherum splendens roots were adopted as the web of the reinforced soil
and which were planted on the slopes of the test area.The reinforced soil of the roots was divided into nine groups of remolding proof samples according to different root amounts.The shear friction test on the samples showed that:under certain root amount and moisture content
apositive linear relationship was showed between the shear strength of the reinforced soil of roots and the normal pressure of the shear plane
as shear strength increased with the increasing vertical pressure.While under certain moisture content and vertical pressure
shear strength increased with the increasing root amount
cohesion c and internal friction angleφincreased as well
and an exponential relation was showed between cohesion c and root amount
but no significant changes occurred to internal friction angleφ. Exponential relationships were showed between the shear strength of the reinforced soil of the roots and root amount
when the vertical pressure was 20.5
61.5
102.5and 143.5kPa.This study showed that roots of Achnatherum splendens can improve the shear strength in the testing areas and enhance the slope stability.