This study investigates the variation of matrix suction, water content and ground water level before and after the rainfall for the unsaturated colluvium slope in the campus of Fuafan University. The measuring devices...This study investigates the variation of matrix suction, water content and ground water level before and after the rainfall for the unsaturated colluvium slope in the campus of Fuafan University. The measuring devices including electrical matrix suction, water content and ground water level were set up in different surface of planting condition for each depth in real-time. It is observed that the matrix suction in the time from July to September is higher; however, when heavy rains caused by typhoon happened, matrix suction will drop rapidly. This variation is obvious in short grass zone and less clear in the broadleaftree zone. The maximum value in short grass zone, long grass zone and broadieaf tree zone at 2 m depth are 90.3, 68.2, 18.5 kPa, respectively. These results are expected to serve as a reference for the study of slope stability mechanisms.展开更多
Surface soil cracking in alpine meadows signifies the transition of degradation from quantitative accumulation to qualitative deterioration.Quantitative research remains insufficient regarding changes in the mechanica...Surface soil cracking in alpine meadows signifies the transition of degradation from quantitative accumulation to qualitative deterioration.Quantitative research remains insufficient regarding changes in the mechanical properties of degraded meadow soils and the mechanical thresholds for cracking initiation.This study explored the relationships between surface cracking and the physical properties,tensile strength,and matrix suction of root-soil composites in alpine meadow sites with different stages of degradation(undegraded(UD),lightly degraded(LD),moderately degraded(MD),and heavily degraded(HD))under different water gradients(high water content(HWC),medium water content(MWC),and low water content(LWC))corresponding to different drying durations at a constant temperature of 40.0°C.The Huangcheng Mongolian Township in Menyuan Hui Autonomous County,Qinghai Province,China was chosen as the study area.The results indicated that as the degradation degree of alpine meadow intensified,both water content of rootsoil composite and the fine grain content of soil decreased.In contrast,the root-soil mass ratio and root area ratio initially increased and then decreased with progressive degradation.Under a consistent water content,the tensile strength of root-soil composite followed a pattern of MD>HD>LD>UD.The peak displacement of tensile strength also decreased as the degradation degree of alpine meadow increased.Both the tensile strength and matrix suction of root-soil composite increased as root-soil water content decreased.A root-soil water content of 30.00%-40.00%was found to be the critical threshold for soil cracking in alpine meadows.Within this range,the matrix suction of root-soil composite ranged from 50.00 to 100.00 kPa,resulting in the formation of linear cracks in the surface soil.As the root-soil water content continued to decrease,liner cracks evolved into branch-like and polygonal patterns.The findings of this study provide essential data for improving the mechanical understanding of grassland cracking and its development process.展开更多
与地下水位以下的饱和黄土力学性质相比,包气带黄土力学性质具有不同的表征参数和测试方法,其对黄土斜坡渗流场和稳定性的影响不容忽视。以甘肃黑方台地区黄土为例,分别采用张力计和轴平移技术量测了黄土的部分区段土-水特征曲线,依据Ga...与地下水位以下的饱和黄土力学性质相比,包气带黄土力学性质具有不同的表征参数和测试方法,其对黄土斜坡渗流场和稳定性的影响不容忽视。以甘肃黑方台地区黄土为例,分别采用张力计和轴平移技术量测了黄土的部分区段土-水特征曲线,依据Gardner、Van Genuchten和Fredlund and Xing 3种经验公式对轴平移测试数据进行拟合,获取了完整的土-水特征曲线。基于GDS多功能三轴仪,通过控制基质吸力的三轴剪切试验,获取了考虑基质吸力的黄土强度参数。结果显示:张力计和轴平移技术量测的部分区段土-水特征曲线具有相近的曲线形态,但张力计曲线位于轴平移技术曲线的上方;当基质吸力由100kPa减小至20kPa时,黄土内摩擦角减小约1°,粘聚力下降近22kPa;拟合所得的黑方台地区黄土的基质吸力摩擦角为15.6°。试验为进行黑方台黄土斜坡的非饱和渗流和稳定性分析提供了参数。展开更多
基金Taiwan Science Council Research Project (94-2745-E211- 004-URD) and the Huafan University, Taiwan.
文摘This study investigates the variation of matrix suction, water content and ground water level before and after the rainfall for the unsaturated colluvium slope in the campus of Fuafan University. The measuring devices including electrical matrix suction, water content and ground water level were set up in different surface of planting condition for each depth in real-time. It is observed that the matrix suction in the time from July to September is higher; however, when heavy rains caused by typhoon happened, matrix suction will drop rapidly. This variation is obvious in short grass zone and less clear in the broadleaftree zone. The maximum value in short grass zone, long grass zone and broadieaf tree zone at 2 m depth are 90.3, 68.2, 18.5 kPa, respectively. These results are expected to serve as a reference for the study of slope stability mechanisms.
基金funded by the National Natural Science Foundation of China(42062019,42002283)。
文摘Surface soil cracking in alpine meadows signifies the transition of degradation from quantitative accumulation to qualitative deterioration.Quantitative research remains insufficient regarding changes in the mechanical properties of degraded meadow soils and the mechanical thresholds for cracking initiation.This study explored the relationships between surface cracking and the physical properties,tensile strength,and matrix suction of root-soil composites in alpine meadow sites with different stages of degradation(undegraded(UD),lightly degraded(LD),moderately degraded(MD),and heavily degraded(HD))under different water gradients(high water content(HWC),medium water content(MWC),and low water content(LWC))corresponding to different drying durations at a constant temperature of 40.0°C.The Huangcheng Mongolian Township in Menyuan Hui Autonomous County,Qinghai Province,China was chosen as the study area.The results indicated that as the degradation degree of alpine meadow intensified,both water content of rootsoil composite and the fine grain content of soil decreased.In contrast,the root-soil mass ratio and root area ratio initially increased and then decreased with progressive degradation.Under a consistent water content,the tensile strength of root-soil composite followed a pattern of MD>HD>LD>UD.The peak displacement of tensile strength also decreased as the degradation degree of alpine meadow increased.Both the tensile strength and matrix suction of root-soil composite increased as root-soil water content decreased.A root-soil water content of 30.00%-40.00%was found to be the critical threshold for soil cracking in alpine meadows.Within this range,the matrix suction of root-soil composite ranged from 50.00 to 100.00 kPa,resulting in the formation of linear cracks in the surface soil.As the root-soil water content continued to decrease,liner cracks evolved into branch-like and polygonal patterns.The findings of this study provide essential data for improving the mechanical understanding of grassland cracking and its development process.
文摘与地下水位以下的饱和黄土力学性质相比,包气带黄土力学性质具有不同的表征参数和测试方法,其对黄土斜坡渗流场和稳定性的影响不容忽视。以甘肃黑方台地区黄土为例,分别采用张力计和轴平移技术量测了黄土的部分区段土-水特征曲线,依据Gardner、Van Genuchten和Fredlund and Xing 3种经验公式对轴平移测试数据进行拟合,获取了完整的土-水特征曲线。基于GDS多功能三轴仪,通过控制基质吸力的三轴剪切试验,获取了考虑基质吸力的黄土强度参数。结果显示:张力计和轴平移技术量测的部分区段土-水特征曲线具有相近的曲线形态,但张力计曲线位于轴平移技术曲线的上方;当基质吸力由100kPa减小至20kPa时,黄土内摩擦角减小约1°,粘聚力下降近22kPa;拟合所得的黑方台地区黄土的基质吸力摩擦角为15.6°。试验为进行黑方台黄土斜坡的非饱和渗流和稳定性分析提供了参数。