山东大学学报(工学版)
山東大學學報(工學版)
산동대학학보(공학판)
JOURNAL OF SHANDONG UNIVERSITY(ENGINEERING SCIENCE)
2013年
5期
68-73
,共6页
弋晓明%王松根%宋修广%臧亚囡
弋曉明%王鬆根%宋脩廣%臧亞囡
익효명%왕송근%송수엄%장아닙
路基不均匀沉降%控制指标%沉降梯度%沉降距离%一阶梯度
路基不均勻沉降%控製指標%沉降梯度%沉降距離%一階梯度
로기불균균침강%공제지표%침강제도%침강거리%일계제도
subgrade uneven settlement%evaluation index%settlement gradient%spread distance%first derivative settlement gradient
为了研究路基不均匀沉降的控制指标,利用数值计算的方法,研究路基不均匀沉降的沉降梯度对基层底部附加应力的影响;并基于双层弹性连续体系,求解不均匀沉降在半刚性基层底部产生的弯拉应力,最后利用麦克劳林展开式进行简化。研究结果表明:利用沉降梯度作为路基不均匀沉降的控制指标,具有一定的局限性;而沉降梯度与沉降距离的比值,即一阶梯度,与弯拉应力之间存在一一对应的关系,可作为容许不均匀沉降的控制指标。对于我国典型的半刚性路面结构来说,不考虑车辆荷载时,路基不均匀沉降的容许一阶梯度可取为0.000161 m-1。
為瞭研究路基不均勻沉降的控製指標,利用數值計算的方法,研究路基不均勻沉降的沉降梯度對基層底部附加應力的影響;併基于雙層彈性連續體繫,求解不均勻沉降在半剛性基層底部產生的彎拉應力,最後利用麥剋勞林展開式進行簡化。研究結果錶明:利用沉降梯度作為路基不均勻沉降的控製指標,具有一定的跼限性;而沉降梯度與沉降距離的比值,即一階梯度,與彎拉應力之間存在一一對應的關繫,可作為容許不均勻沉降的控製指標。對于我國典型的半剛性路麵結構來說,不攷慮車輛荷載時,路基不均勻沉降的容許一階梯度可取為0.000161 m-1。
위료연구로기불균균침강적공제지표,이용수치계산적방법,연구로기불균균침강적침강제도대기층저부부가응력적영향;병기우쌍층탄성련속체계,구해불균균침강재반강성기층저부산생적만랍응력,최후이용맥극로림전개식진행간화。연구결과표명:이용침강제도작위로기불균균침강적공제지표,구유일정적국한성;이침강제도여침강거리적비치,즉일계제도,여만랍응력지간존재일일대응적관계,가작위용허불균균침강적공제지표。대우아국전형적반강성로면결구래설,불고필차량하재시,로기불균균침강적용허일계제도가취위0.000161 m-1。
In order to research the evaluation index of differential settlement, the finite element code was used to study the influence of settlement gradient on the additional stress of the base.Then the analytic solution of tensile stress at the bottom of semi-rigid base was obtained basing on the two layer of elastic continuous system, and the maclaurin expan-sion was adopted to simplify the analytic solution.Results showed that there were great limitations for using the settle-ment gradient to evaluate the allowable uneven settlement.But the first derivative settlement gradient, which was the ra-tio of settlement gradient to spread distance, had a well linear correspondence to the tensile stress.Therefore, the first derivative settlement gradient could be used as the key index to assess the allowable subgrade uneven settlement.For the typical semi-rigid base asphalt pavement structure, the allowable first derivative settlement gradient was 0.000 161 m-1 , when the traffic loading was not considered.