论坛首页    职业区    学术与写作    工程技术区    软件区    资料区    商务合作区    社区办公室
 您好! 欢迎 登录 或 注册 最新帖子 邀请注册 活动聚焦 统计排行 社区服务 帮助
 
  • 帖子
  • 日志
  • 用户
  • 版块
  • 群组
帖子
  • 3538阅读
  • 7回复

[资料]Chapter 7 Slope Stability Part 1 [复制链接]

上一主题 下一主题
离线panqiang
 

发帖
1164
土币
36756
威望
6589
原创币
0
只看楼主 倒序阅读 使用道具 楼主  发表于: 2008-07-29
Chapter 7 Slope Stability Part 1 [边坡稳定] hYM@?/(q  
)I$q5%q8  
7.1    Types of slope failure [滑坡的类型] ;Hj~n+  
W~p/,HcM  
    The most common types of slope failure [滑坡] are illustrated in Fig.7.1. Translational slide tends to occur where an adjacent weak zone [软弱层] of soil is at a relatively shallow depth below the surface of the slope. The failure surface tends to be plane and roughly parallel to the slope. [滑动面为平面与坡面平行] bf!M#QOk?  
    Rotational slide is common for cohesive soil [粘性土] (e.g. clays) slope. The shape of the failure surface in section may be a circular arc or a non-circular curve. In general circular slides are associated with homogeneous soil conditions and non-circular slides are associated with non-homogeneous soil conditions. [滑动面为一曲面] aOiR l,  
k}0^&Quc4  
7.2    Methods of slope stability analysis [边坡稳定分析方法] cg*)0U-_(  
R hvfC5Hq  
    The stability of a slope can be analysed using one or more of the following methods: a(v>Q*zNP  
– Limit equilibrium method (equilibrium of forces) [极限平衡法] HfvTxaK  
– Limit analysis based on plasticity (equilibrium of stresses) [极限应力分析法] .?!N^_ Ez3  
– Finite difference method [有限差分法] Ie4hhW  
– Finite element method [有限元法] V`7FKL@"  
Although a finite element or a finite difference method is more flexible and general, in practice, the limit equilibrium method (LEM) is used in the slope stability analysis. @$2))g`  
In LEM, the soil is considered to be on the verge of failure along an assumed or a known sliding surface. [在某一假设滑动面,整个块体处于极限平衡状态] In general, the sliding surface is assumed to be a circular arc for clays or a logarithmic spiral for sands and gravels. The shear strength required to maintain a condition of limiting equilibrium is compared with the available shear strength of the soil, giving the average factor of safety along the sliding surface [安全糸数定义为抗剪力与下滑力之比]. The problem is normally considered in two dimensions. [土坡的稳定分析可简化为平面问题] ^pe{b9c  
For the slope stability analysis using the LEM, two analyses are considered for each slope: %o:2^5\W  
–     Effective Stress Analysis [有效应力分析] (ESA) which represents drained or long-term behaviour of the slope. Cohesion (c’) and angle of internal friction (’) are used in the analysis. !Z5[QNVaV  
–     Total Stress Analysis [总应力分析] (TSA) which represents undrained or short-term behaviour of the slope. Undrained shear strength (cu) is used in the analysis. `zE}1M%y  
Pw;!uag  
7.3    Analysis of a plane translational slide %LZ({\5K#f  
Ko/ I#)  
    It is assumed that the potential failure surface is parallel to the surface of the slope and is at a depth that is small compared with the length of the slope. The slope can then be considered as being of infinite length, with end effects being ignored. [假设滑动面与坡面平行, 滑动块体深度远小于边坡长度, 边坡为无限长] e&qh9mlE  
The slope is inclined at angle  to the horizontal and the depth of the failure plane is z, as shown in Fig.7.2. Consider a slice of soil element of width b. [坡角为, 滑动面深度z, 土条宽度为b] Assume the side forces on the soil element can be neglected in the stability analysis, ground water table is below the failure plane and the soil is cohesionless. [假设不考虑土条两边的合力,地下水位低于滑动面,无粘性土] The forces acting on the element are shown in Fig.7.2. W is weight of soil element [土条重量], T is shear force on the failure plane [平行于滑动面的下滑剪切力] and N is normal force on the failure plane [滑动面法线方向的分力]. Consider equilibrium of forces parallel to the slope surface, [边坡平行方向的静力平衡] y;AL'vm9  
                                                                (7.1) ^4`Px/&  
Consider equilibrium of forces normal to the slope surface, [边坡法线方向的静力平衡] H03jDM8Q  
                                                                (7.2) =?s 3iP  
The available shear strength (Tf) along the failure surface is [滑动面上的抗剪力] &ZX{R#[L  
                                                (7.3) Jte#ZnP  
where  is the angle of internal friction. Factor of safety (FS) is defined as the ratio of Tf and T. [安全糸数定义为抗剪力与下滑力之比] |)K]U  
                                                (7.4) CBD6bl|A  
    If water table coincides with the slope surface, the forces acting on the element are shown in Fig.7.3. [地下水位于坡面] An additional hydrostatic force (U) is acting on the failure plane normal to the slope surface [边坡法线方向的静水力]. The equilibrium of forces parallel to the slope surface is also represented by equation (7.1). Consider equilibrium of forces normal to the slope surface, 'qF#<1&  
                                                            (7.5) i7utKj*57  
The available shear strength (Tf) along the slip surface is l+g9 5m jP  
                                            (7.6) bLd#xXl  
Then, factor of safety (FS) is expressed as: pTyi!:g3W  
                                                (7.7) %0mMz.f  
The weight W is expressed as: y:h}z).  
                                                                (7.8) [_.5RPJP8  
where sat is saturated unit weight of soil. The hydrostatic force U is expressed as hweaGL t0  
                                (7.9) nYa*b=[.  
where u is pore-water pressure at failure plane and w is unit weight of water. Substitute equations (7.8) and (7.9) into equation (7.7) ZJ 77[  
        (7.10) -atGlu2  
Comparing Equations (7.4) and (7.10), the factor of safety is reduced by a factor ’/s if the water table rises to the slope surface. ?1 [\!  
_Jt 2YZdA  
7.4    Total stress analysis (u = 0) [总应力分析] nE^Qy=iE  
t6A:Z mG_  
    This total stress analysis covers the case of a fully saturated clay under undrained condition, or for the condition immediately after construction. [总应力分析合适用于饱和粘土在不排水条件下或短期的稳定分析] Only moment equilibrium is considered in the analysis. [满足力矩平衡条件] In section, the potential failure surface is assumed to be a circular arc [滑动面为弧形]. A trial failure surface (center O, radius r and length L [圆心为O,半径为r,弧长为L]) is shown in Fig.7.4. The failure of slope is mainly due self-weight (W) of the soil. Consider the moment at point O, the disturbing moment of W is expressed as ,ML[Wr'2  
                                                                  (7.11) 1s{^X -  
where d is the moment arm of W from point O [d是W对滑弧圆心的力臂]. The forces resisting the rotation of the sliding soil mass are the shear forces (Tf) mobilised along the circular sliding surface. The resisting moment of Tf at point O is expressed as p$x{yz3  
                                                        (7.12) SY^dWLf  
where cu is undrained shear strength of the soil, L is length of the circular arc and r is radius of the circular arc. Then factor of safety (Fs) is given by " $ew~;z  
                                                        (7.13) rJ!{/3e  
It is necessary to analyse the slope for a number of trial failure surfaces in order that the minimum factor of safety can be determined. If tension crack exists at the crest of the slope, the arc length L will be shortened. [当裂缝在坡顶出现,滑弧长度便会减小] The depth of the tension crack can be evaluated from the method presented in 土力学 p.196. [计算裂缝深度可参考土力学 p.196] If the crack is filled with water, a hydrostatic force will act normal to the crack. The additional moment of this hydrostatic force must be added to equation (7.11) for calculating the factor of safety of the slope. [当裂缝积水,计算安全糸数时公式(7.11)中必需考虑静水压力对滑弧圆心O的力矩] Wf&W^Q  
Kbb78S30  
)h8\u_U  
!\,kZ|#>  
QtJg ^2@  
p mFk50`  
*s>BG1$<  
+ke1Cn'[  
N]<!j$pOz  
,57`D'  
L   
!DI{:I_h(  
Fig.7.1a Types of slope failures – translational slide ~2zM kVH  
z ly unJD(  
Z+StB15  
\a=D  
3:f[gV9K  
DVkB$2]  
r@o6voX  
2d {y M(=(  
0`I-2M4F*Q  
sqS=qC  
Iy.rqc/86  
XxaGp95so  
bgK<pi)d  
f~_th @K  
Fig.7.1b Types of slope failures – rotational slide |-CnT:|o  
&09U@uc$  
"/nNM{^  
lZrVY+ D  
!E-Pa5s  
YTjkPj:  
Zb134b'  
-#Z bR  
UD)e:G[Gat  
WzI8_uM  
j $TwL;  
L:k9# 6  
C>[fB|^  
%O<%UmR  
D^-7JbE]  
8B#GbS K  
Kmdlf,[3d  
Fig.7.2 Plane Translational slide with no water table M!tXN&V]  
RJON90,J  
A?oXqb  
cn- nj]  
bug Ot7  
( &frUQm  
gt7VxZ  
 =Mb1o[  
]Bm>-*@0N  
j$7Xs"  
!xKJE:4/,m  
F|HJH"2*&q  
/De^  
6O22P?v  
Fig.7.3 Plane Translational slide with water table @5[kcU>  
\J6hI\/4^  
]Y| 9?9d  
6Vbzd0dk  
s#S%#LM  
W7\&~IWub  
R3!@?mcr  
Cb_oS4vM  
Cua%1]"4w  
7]%Ypv$  
e[Jem5C  
%c1#lEC2xN  
8l"O(B'#Z  
;_(PVo  
((^sDE6(  
Fig.7.4 Total stress analysis 4 8{vE3JY  
离线liberty521

发帖
502
土币
134
威望
1151
原创币
0
只看该作者 1楼 发表于: 2008-07-29
学习,学习,完整的可以分享一下吧,
离线ashowtang

发帖
666
土币
512
威望
630
原创币
0
只看该作者 2楼 发表于: 2008-09-07
那里 下载 了啊
莫道谗言如浪深,莫言迁客似沙沉。
千淘万漉虽辛苦,吹尽狂沙始到金。
离线lyhn

发帖
2320
土币
41
威望
2508
原创币
0
只看该作者 3楼 发表于: 2008-10-04
可以分享一下么????谢谢!
离线wangwei

发帖
927
土币
0
威望
4449
原创币
0
只看该作者 4楼 发表于: 2009-03-02
学习,学习,完整的可以分享一下吧
离线xjywgy

发帖
6855
土币
886
威望
67219
原创币
0
只看该作者 5楼 发表于: 2010-02-11
谢谢分享,好好学习
共鲜花(xjyxr) 谢谢条评分
离线amos

发帖
10800
土币
169
威望
564
原创币
0
只看该作者 6楼 发表于: 2011-12-24
谢谢楼主分享~~~支持一下~~~
离线opqpk

发帖
88
土币
46
威望
8
原创币
0
只看该作者 7楼 发表于: 2012-11-20
感謝你 不知道有沒有 LOG-SPIRAL法 ZCg`z  
快速回复
限100 字节
温馨提示:欢迎交流讨论,请勿纯表情、纯引用!
 
上一个 下一个

      https://beian.mps.gov.cn/ 粤公网安备 44010602012919号 广州半山岩土网络科技有限公司 粤ICP备2024274469号

      工业和信息化部备案管理系统网站