水利与建筑工程学报
水利與建築工程學報
수리여건축공정학보
TECHNIQUE OF SEEPAGE CONTROL
2015年
2期
73-77
,共5页
非饱和土%土水特征曲线%降雨入渗%边坡稳定
非飽和土%土水特徵麯線%降雨入滲%邊坡穩定
비포화토%토수특정곡선%강우입삼%변파은정
unsaturated soil%soil-water characteristic curve%rainfall infiltration%slope stability
对扬州地区典型黏性土进行了土水特征曲线试验研究,分析了干密度对土水特征曲线的影响。试验表明:土的初始干密度越大,进气值越大,脱水速率越小。采用 Fredlund 和 Xing 三参数模型计算得土水特征曲线方程,并推算出非饱和土的渗透系数曲线。通过对降雨入渗条件下的扬州地区典型黏性土边坡进行稳定性分析。结果表明:同等基质吸力下,非饱和土体积含水率越大,渗透系数越大;土体进气值越大,同等基质吸力下渗透系数越大,边坡越稳定;扬州地区黏性土体遭遇特大暴雨时,降雨4 d 后边坡安全系数下降30%~50%,滑动面位于边坡表层。
對颺州地區典型黏性土進行瞭土水特徵麯線試驗研究,分析瞭榦密度對土水特徵麯線的影響。試驗錶明:土的初始榦密度越大,進氣值越大,脫水速率越小。採用 Fredlund 和 Xing 三參數模型計算得土水特徵麯線方程,併推算齣非飽和土的滲透繫數麯線。通過對降雨入滲條件下的颺州地區典型黏性土邊坡進行穩定性分析。結果錶明:同等基質吸力下,非飽和土體積含水率越大,滲透繫數越大;土體進氣值越大,同等基質吸力下滲透繫數越大,邊坡越穩定;颺州地區黏性土體遭遇特大暴雨時,降雨4 d 後邊坡安全繫數下降30%~50%,滑動麵位于邊坡錶層。
대양주지구전형점성토진행료토수특정곡선시험연구,분석료간밀도대토수특정곡선적영향。시험표명:토적초시간밀도월대,진기치월대,탈수속솔월소。채용 Fredlund 화 Xing 삼삼수모형계산득토수특정곡선방정,병추산출비포화토적삼투계수곡선。통과대강우입삼조건하적양주지구전형점성토변파진행은정성분석。결과표명:동등기질흡력하,비포화토체적함수솔월대,삼투계수월대;토체진기치월대,동등기질흡력하삼투계수월대,변파월은정;양주지구점성토체조우특대폭우시,강우4 d 후변파안전계수하강30%~50%,활동면위우변파표층。
A series of tests were conducted to analyze the characteristics of the cohesive soil in Yangzhou area ,as well as the influence of different dry density and different soil on soil-water characteristic curve .The results suggest that the larg-er the initial dry density of soil is ,the greater the value of the air entry ,and the smaller the rate of dehydration .And then the equation of soil-water characteristic curve was obtained by adopting three parameter model of Fredlund and Xing , through which the curve of the permeability coefficient of unsaturated soil was calculated .The stability analysis of a typi-cal cohesive soil slope in Yangzhou in the condition of rainfall infiltration indicates that with the same test material ,the greater the water content of the unsaturated soil mass ,the larger the permeability coefficient ;the greater the depth of rainfall infiltration ,the greater the air entry value ,the greater the permeability coefficient ,therefore the more stable the soil slope is .After 4 days of heavy rainfall in Yangzhou ,The cohesive soil slope safety coefficient dropped 30% ~ 50% , The sliding surface was on the slope surface .