岩土力学
巖土力學
암토역학
ROCK AND SOIL MECHANICS
2014年
z1期
245-250
,共6页
周晓龙%马亢%钱明%刘德稳%赵琦
週曉龍%馬亢%錢明%劉德穩%趙琦
주효룡%마항%전명%류덕은%조기
挡土墙%被动土压力%土拱效应%应力状态法%静力平衡法
擋土牆%被動土壓力%土拱效應%應力狀態法%靜力平衡法
당토장%피동토압력%토공효응%응력상태법%정력평형법
retaining wall%passive earth pressure%soil arching effect%stress state method%static equilibrium method
为解释挡土墙后填土被动土压力的非线性分布现象,在考虑土拱形状为圆弧,滑裂面采用朗肯滑裂面的基础上,给出考虑土拱效应的被动土压力系数 Kawn,进而基于应力状态法及土楔形体静力平衡两种思想求解了竖向平均应力 vs公式,在该基础上,给出黏性土填料下的挡土墙被动土压力分布公式、合力公式及作用点高度计算公式。通过与试验与其他方法对比,文中提出的方法得到验证。最后,研究了黏性土填料下的挡土墙被动土压力变化规律,即考虑土拱效应求得的黏性土填料的被动土压力分布呈现上小下大的指数型分布。此外,随着δ/φ(δ为墙土摩擦角,φ为内摩擦角)的增大,土拱效应逐渐增强,土压力合力点逐渐降低。
為解釋擋土牆後填土被動土壓力的非線性分佈現象,在攷慮土拱形狀為圓弧,滑裂麵採用朗肯滑裂麵的基礎上,給齣攷慮土拱效應的被動土壓力繫數 Kawn,進而基于應力狀態法及土楔形體靜力平衡兩種思想求解瞭豎嚮平均應力 vs公式,在該基礎上,給齣黏性土填料下的擋土牆被動土壓力分佈公式、閤力公式及作用點高度計算公式。通過與試驗與其他方法對比,文中提齣的方法得到驗證。最後,研究瞭黏性土填料下的擋土牆被動土壓力變化規律,即攷慮土拱效應求得的黏性土填料的被動土壓力分佈呈現上小下大的指數型分佈。此外,隨著δ/φ(δ為牆土摩抆角,φ為內摩抆角)的增大,土拱效應逐漸增彊,土壓力閤力點逐漸降低。
위해석당토장후전토피동토압력적비선성분포현상,재고필토공형상위원호,활렬면채용랑긍활렬면적기출상,급출고필토공효응적피동토압력계수 Kawn,진이기우응력상태법급토설형체정력평형량충사상구해료수향평균응력 vs공식,재해기출상,급출점성토전료하적당토장피동토압력분포공식、합력공식급작용점고도계산공식。통과여시험여기타방법대비,문중제출적방법득도험증。최후,연구료점성토전료하적당토장피동토압력변화규률,즉고필토공효응구득적점성토전료적피동토압력분포정현상소하대적지수형분포。차외,수착δ/φ(δ위장토마찰각,φ위내마찰각)적증대,토공효응축점증강,토압력합력점축점강저。
The nonlinear phenomenon which the passive earth pressure behind the retaining wall of both sand and cohesive soil is nonlinear distribution could be explained by the soil arching effect theory. The formula which calculated passive earth pressure coefficient of which assumed the stress state method and the soil wedge static equilibrium method were derived considering the soil arching effect, assumed arch as circle and the angle of slip surface as Rankine’s theory. Then, the distribution of lateral earth pressure considering the soil arching was derived by the above formulations; also the formulas that calculating the magnitude and the point of application of lateral passive earth pressure were derived. The accuracy of proposed method is confirmed by comparing with the experimental tests and values from existing equations. Finally, the trends of distribution and the height of total passive earth pressure of clayey soil are studied; distribution of passive earth pressures considering the soil arching is likely an exponential curve; and the height of resultant earth pressure point is gradually reducing with increasing the ratio of soil-wall friction angle to internal angle δ/φ.