桩基沉降计算表教程文件
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&2垂直荷载地基应力σp(一)计算图式如图[1]1.空心桩外荷载P=40547(KN )i.50m T 梁支座反力 P 1=36960(KN ) ii.长16.60m 冒 梁 P 2=2291 (KN ) iii. φ2.30m 双桥墩柱 P 3=1296 (KN )2.空心桩自重G 桩=31490(KN )G 1=15 4×2=308×[25KN/方]=7700(KN )G 2=6 8 ×2=136×[25KN/方]=3400(KN )G 3=62.7×4=250×[25KN/方]=6270(KN )G 4=50.1×4=200×[25KN/方]=5000(KN )G 5=9 5 ×4=380×[24KN/方]=9120(KN )3.桩底垂直荷载(恒载)总和∑G 0=P+G=40547+31490=72037(KN )(二)按土壤扩散角计算桩底应力1.如图4-2 土坡扩散角θ=4ϕ=154︒=3.75° 桩长16m 扩散角锥体底面直径如下:D=d+h ·tan θ=11+(16×0.0655) ×2=11+(1.05×2=2.10)=16.10(m )A D =16.102×4π =204(m 2)2.地层不同深度的允许应力(JTGD63-2007)[f a ]=[ f a 0]+k 1r 1(b-2)+ k 2r 2(h-3) --(3.3.4)粉粘土承载力基本容许值[ f a 0]=0.20(MPa )=200(KN/m 2)宽度修正系数k 1=0 深度修正系数k 2=1.5基底埋置深度h=16(m )[ f a h ]=0.200+1.5×1.97×(16-3)=0.200+0.38=0.58(MPa )=580(KN/m 2)3.挖孔桩外形体积∑V g =1957(方)V 1=φ1 4 ×2=154×2=308(方)V 2=φ13.5×2=143×2=286(方)V 3=φ1 3 ×4=133×4=531(方)V 4=φ1 2 ×4=113×4=452(方)V 5=φ1 1 ×4=9 5×4=380(方)4.桩长h=16m 中锥体体积V 0=141615420416286422φφ++=⨯=(方)土的体积V 土= V 0-V g =2864-1957=907(方)土重G 土=907 ×[19.7t/方]=17868(KN)5.桩端水平线上桩自重,垂直重量在直线D=16.10(m )中的应力∑Q g =G 桩+ G 土=31490+17868=49358(KN)应力σg =gDQA ∑=49358204=242(KN/m 2)6.考虑桥墩及上部构造恒载后应力∑Q p = ∑Q g + P=49358+40547=89905(KN)σp = p D Q A ∑= 89905204=441(KN/m 2) <[580 KN/m 2]故安全。
附录R 桩基础最终沉降量计算R.0.1 桩基础最终沉降量的计算采用单向压缩分层总和法:∑∑==∆=mj n i isj ij i j p jE h s 11,,,σψ (R.0.1)式中:s ——桩基最终计算沉降量(mm);m ——桩端平面以下压缩层范围内土层总数;E sj,i ——桩端平面下第j 层土第i 个分层在自重应力至自重应力加附加应力作用段的压缩模量(MPa);n j ——桩端平面下第j 层土的计算分层数;Δh j,i ——桩端平面下第j 层土的第i 个分层厚度(m);σj,i ——桩端平面下第j 层土第i 个分层的竖向附加应力(kPa),可分别按本附录第R.0.2条或第R.0.4条的规定计算;ψp ——桩基沉降计算经验系数,各地区应根据当地的工程实测资料统计对比确定。
R.0.2 采用实体深基础计算桩基础最终沉降量时,采用单向压缩分层总和法按本规范第5.3.5条~第5.3.8条的有关公式计算。
R.0.3 本规范公式(5.3.5)中附加压力计算,应为桩底平面处的附加压力。
实体基础的支承面积可按图R.0.3采用。
实体深基础桩基沉降计算经验系数ψps 应根据地区桩基础沉降观测资料及经验统计确定。
在不具备条件时,ψps 值可按表R.0.3选用。
注:表内数值可以内插。
图R.0.3 实体深基础的底面积R.0.4 采用明德林应力公式方法进行桩基础沉降计算时,应符合下列规定:1,采用明德林应力公式计算地基中的某点的竖向附加应力值时,可将各根桩在该点所产生的附加应力,逐根叠加按下式计算:()∑=+=nk k zs k zp i j 1,,,σσσ (R.0.4-1)式中:σzp,k ——第k 根桩的端阻力在深度z 处产生的应力(kPa):σzs,k ——第k 根桩的侧摩阻力在深度z 处产生的应力(kPa)。
2,第k 根桩的端阻力在深度z 处产生的应力可按下式计算;k p k zp I l Q,2,ασ=(R.0.4-2)式中:Q ——相应于作用的准永久组合时,轴心竖向力作用下单桩的附加荷载(kN);由桩端阻力Q p 和桩侧摩阻力Q s 共同承担,且Q p =αQ ,α是桩端阻力比;桩的端阻力假定为集中力,桩侧摩阻力可假定为沿桩身均匀分布和沿桩身线性增长分布两种形式组成,其值分别为βQ 和(1-α-β)Q ,如图R.0.4所示; l ——桩长(m);I p,k ——应力影响系数,可用对明德林应力公式进行积分的方式推导得出。
桩基础沉降计算
一.计算参数信息:
基础顶面的竖向力: F=100kN/m 基础埋深 H d=1m
基底以上填土的平均重度: γ=17kN/m3基础与填土的平均重度: γ0=22kN/m3 基础截面长度 l=1m 基础截面宽度 B=1m
基底处地基承载力特征值 f ak=1750kPa 计算土层厚度 h0=5m
土层参数表:
二.基础底面附加压力计算:
基础与填土的总重量: G=22×1×1×1=22.00kN;
基底的平均压力: P=(100+22)/(1×1)=122.00kN/m2;
基底处的土中自重压力: P1=17×1=17.00kN/m2;
基底平均附加压力: P0=122.00-17.00=105.00kN/m2。
三.基础底面变形计算:
按分层总和法计算出的地基变形量为: S'=0.11mm。
注:表中Z1=z i×a i,Z2=z i×a i-z i-1×a i-1。
四.基础最终沉降计算:
最终沉降计算公式如下:
其中 S'──按分层总和法计算出的地基变形量;
──变形计算深度范围内压缩模量的当量值:
式中──第i层地附加应力系数沿土层厚度的积分值;
=1.028/0.001=1000.00Mpa;
Ψs──沉降计算经验系数,根据查规范表5.3.5,得Ψs=0.20;
经计算最终沉降量: S=0.20×0.11=0.02mm。
桩基沉降计算
桩形状:圆形
桩直径d或边长b:0.70m
桩面积Ap:0.385m2
下承台底的平均附加压力F:270450KN
天然地基平均附加应力P0:601Kpa
地上层数32地下层数1
实际承台长度Lc:30m
实际承台宽度Bc:15m
承台总面积A:450.00m2
基础长宽比Lc/Bc: 2.00
总桩数n:70
桩长L:50m
桩距Sa: 3.00m
是否规则布桩?是附加应力σz:距径比Sa/d: 4.3自重应力0.2σc:
长径比L/d:71.4沉降计算长度Zn判断:短边布桩数nb:6
C0:0.063
C1: 1.811
C2:10.381
桩基等效沉降系数ψe:0.320
平均压缩模量Es:25.2Mpa
桩基沉降计算经验系数ψ:0.598
桩基中心点沉降量S:35.93mm
注:1、对于采用后注浆施工工艺的灌注桩,桩基沉降计算经验系数
应根据桩端持力土层类别,乘以0.7(砂、砾、卵石)~0.8(黏性土、粉土)折减系数;
2、饱和土中采用预制桩(不含复打、复压、引孔沉桩)时,
应根据桩距、土质、沉桩速率和顺序等因素,乘以1.3~1.8 挤土效应系数,
土的渗透性低,桩距小,桩数多,沉降速率快时取大值。
土层沉降计算表格
162.75Mpa
162.83Mpa
OK
(z。
即上部结构荷载327.8250.174各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz121.3 3.367 3.70622.781142019.386 3.0400014.888 2.9200010.159 2.51402 6.506 2.117 2.264088 3.4972841 4.084 1.7720.710616 1.4636722 2.586 1.4480.899928 2.3920962 1.127 1.0780.392196 1.78085640.5710.8130.397416 2.68615280.1970.4630.274224 3.05950490.1230.3040.192618 2.25993680.0970.2170.135024 1.433936240.0830.1640.346608 3.251136300.0640.1010.33408 2.50278420.0490.0650.358092 2.25498290.0360.0430.181656 1.03002210.1927530.393521.28667即上部结构荷载327.8250.174各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz1 5.395 1.4870.938731.2282620 5.269 1.471000 4.912 1.427000 4.391 1.35902 3.787 1.274 1.317876 2.1046481 3.174 1.180.5522760.974682 2.605 1.0830.90654 1.7891162 1.6910.8980.588468 1.4834964 1.0840.7390.754464 2.441656单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷附加应力计算表 μ=0.4桩侧摩阻力沿桩身线性增m = 1.2 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )桩端阻力比α单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)L桩端阻力比α桩基沉降计算m = 1.1 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )L单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)80.4030.4670.560976 3.08593690.1990.3160.311634 2.34914480.1280.2270.178176 1.500016240.0960.1710.400896 3.389904300.0670.1060.34974 2.62668420.050.0690.3654 2.393748290.0370.0460.186702 1.1018847.41187826.4691717.76993即上部结构荷载327.8250.174各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz1 2.440.9040.424560.7467040 2.4150.899000 2.3420.886000 2.2260.86602 2.0770.8380.722796 1.3843761 1.9070.8050.3318180.664932 1.7250.7680.6003 1.2687362 1.3650.6890.47502 1.1382284 1.0470.6080.728712 2.00883280.5210.4340.725232 2.86787290.2780.3120.435348 2.31940880.170.2310.23664 1.526448240.1180.1760.492768 3.489024300.0730.110.38106 2.7258420.0520.0720.380016 2.497824290.0390.0490.196794 1.1737466.13106423.8119315.7045即上部结构荷载327.8250.174各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz1 1.4020.6290.2439480.5195540 1.3940.627000 1.370.622000 1.3320.613002 1.2810.6010.4457880.9928521 1.220.5870.212280.484862m = 1.3 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)L桩端阻力比αm = 1.4 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)L桩端阻力比α2 1.150.570.40020.9416420.9990.5320.3476520.87886440.8450.4890.58812 1.61565680.5220.3830.726624 2.53086490.3180.2930.497988 2.17816280.2040.2260.283968 1.493408240.140.1770.58464 3.508848300.0820.1130.42804 2.80014420.0560.0750.409248 2.6019290.040.0520.20184 1.2456085.37033621.7923614.24629即上部结构荷载792.8240.16各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz10.9180.4720.146880.3964800.9150.4710000.9050.4690000.8890.4640000.8680.4580000.8410.4510020.810.4420.25920.7425620.7380.4210.236160.7072860.660.3970.6336 2.0008880.4690.3310.60032 2.22432140.320.2680.7168 3.15168150.220.2150.528 2.709260.1560.1730.64896 3.77832300.090.1140.432 2.8728370.060.0770.3552 2.39316370.0430.0540.25456 1.678324.8116822.654837.80456即上部结构荷载792.8240.16各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz10.6540.3720.104640.3124800.6520.3710000.6470.3700m = 1.6 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )L桩端阻力比αm = 1.5 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)L桩端阻力比α单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)00.6390.3680000.6290.3640000.6150.360020.5990.3550.191680.596420.5620.3430.179840.5762460.5190.3280.49824 1.6531280.4040.2850.51712 1.9152140.3010.2410.67424 2.83416150.2210.20.5304 2.52260.1640.1650.68224 3.6036300.0970.1130.4656 2.8476370.0640.0790.37888 2.45532370.0450.0560.2664 1.740484.4892821.054635.15831即上部结构荷载792.8240.16各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz10.4920.3030.078720.2545200.4910.3030000.4890.3020000.4850.30000.4790.2990000.4710.2960020.4620.2930.147840.4922420.4410.2850.141120.478860.4160.2750.39936 1.38680.3440.2470.44032 1.65984140.2730.2150.61152 2.5284150.2120.1840.5088 2.3184260.1640.1560.68224 3.40704300.1020.1110.4896 2.7972370.0680.0790.40256 2.45532370.0480.0570.28416 1.771564.1862419.5493232.66936即上部结构荷载792.8240.16L桩端阻力比αm = 1.8 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)L桩端阻力比αm = 1.7 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)各圆环内的桩数k Ip Is αki Ip (1-α) ki Isσz10.3860.2530.061760.2125200.3860.2530000.3840.2530000.3820.2520000.3780.250000.3740.2490020.3690.2460.118080.4132820.3560.2410.113920.4048860.340.2350.3264 1.184480.2930.2150.37504 1.4448140.2440.1920.54656 2.25792150.1980.1680.4752 2.1168260.1590.1450.66144 3.1668300.1040.1070.4992 2.6964370.070.0780.4144 2.42424370.050.0570.296 1.771563.88818.093630.25523即上部结构荷载792.8240.16各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz10.3130.2160.050080.1814400.3120.2160000.3120.2150000.310.2140000.3080.2140000.3050.2120020.3020.2110.096640.3544820.2930.2070.093760.3477660.2830.2030.27168 1.0231280.2520.1890.32256 1.27008140.2170.1710.48608 2.01096150.1820.1530.4368 1.9278260.1510.1350.62816 2.9484300.1030.1030.4944 2.5956370.0720.0770.42624 2.39316370.0520.0580.30784 1.802643.6142416.8554428.17424即上部结构荷载792.8m = 1.9 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)L桩端阻力比α240.16各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz10.2590.1860.041440.1562400.2590.1860000.2590.1860000.2580.1860000.2560.1850000.2540.1840020.2520.1830.080640.3074420.2460.180.078720.302460.2390.1770.229440.8920880.2180.1670.27904 1.12224140.1920.1540.43008 1.81104150.1660.1390.3984 1.7514260.1420.1250.59072 2.73300.1010.0980.4848 2.4696370.0720.0750.42624 2.331370.0530.0570.31376 1.771563.3532815.64526.14902m = 2.0 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )桩端阻力比αL即上部结构荷载842.8240.16各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz10.2190.1630.035040.1369200.2190.1630000.2190.1630000.2180.1630000.2170.1620000.2160.1610020.2140.1610.068480.2704820.210.1590.06720.2671260.2050.1560.19680.7862480.190.1480.24320.99456140.1710.1380.38304 1.62288150.1510.1270.3624 1.6002260.1320.1150.54912 2.5116300.0980.0930.4704 2.3436370.0720.0730.42624 2.26884370.0530.0560.31376 1.740483.1156814.5429225.83797即上部结构荷载842.8240.16各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz10.1880.1440.030080.1209600.1880.1440000.1880.1440000.1880.1440000.1870.1430000.1860.1430020.1850.1420.05920.2385620.1820.1410.058240.2368860.1780.1390.170880.70056m = 2.2 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )取长期效应作用下的单桩平均附加荷载)表 μ=0.4线性增长分布单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)L桩端阻力比αm = 2.1 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)L桩端阻力比α降计算80.1670.1330.213760.89376140.1530.1250.34272 1.47150.1380.1160.3312 1.4616260.1220.1070.50752 2.33688300.0940.0870.4512 2.1924370.0710.070.42032 2.1756370.0540.0550.31968 1.70942.904813.536624.05697即上部结构荷载842.8240.16各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz10.1640.1290.026240.1083600.1640.1290000.1640.1280000.1630.1280000.1630.1280000.1620.1280020.1610.1270.051520.2133620.1590.1260.050880.2116860.1570.1250.150720.6380.1480.120.189440.8064140.1370.1140.30688 1.34064150.1250.1060.3 1.3356260.1130.0990.47008 2.16216300.0890.0820.4272 2.0664370.0690.0670.40848 2.08236370.0530.0540.31376 1.678322.695212.6352822.43147即上部结构荷载842.8240.16各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz10.1440.1160.023040.0974400.1440.1150000.1440.1150000.1440.1150000.1430.1150000.1430.11500单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)L桩端阻力比αm = 2.4 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )L桩端阻力比αm = 2.3 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)20.1420.1140.045440.1915220.1410.1140.045120.1915260.1390.1120.133440.5644880.1320.1090.168960.73248140.1240.1040.27776 1.22304150.1140.0980.2736 1.2348260.1040.0910.43264 1.98744300.0840.0780.4032 1.9656370.0670.0640.39664 1.98912370.0520.0520.30784 1.616162.5076811.793620.92555即上部结构荷载792.8240.16各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz10.1280.1040.020480.0873600.1280.1040000.1280.1040000.1280.1040000.1270.1040000.1270.1040020.1260.1030.040320.1730420.1250.1030.040.1730460.1240.1020.119040.5140880.1190.0990.152320.66528140.1120.0950.25088 1.1172150.1040.090.2496 1.134260.0960.0840.39936 1.83456300.080.0730.384 1.8396370.0640.0610.37888 1.89588370.0510.0510.30192 1.585082.336811.0191218.38294即上部结构荷载792.8240.16各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz10.1150.0950.01840.079800.1150.0950000.1150.09500单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)桩端阻力比αm = 2.6 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )L桩端阻力比αm = 2.5 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)L00.1140.0950000.1140.0950000.1140.0940020.1130.0940.036160.1579220.1120.0940.035840.1579260.1110.0930.106560.4687280.1070.090.136960.6048140.1020.0870.22848 1.02312150.0960.0830.2304 1.0458260.0890.0780.37024 1.70352300.0750.0690.36 1.7388370.0620.0580.36704 1.80264370.050.0490.296 1.522922.1860810.3059617.19391即上部结构荷载792.8240.16各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz10.1030.0870.016480.0730800.1030.0870000.1030.0870000.1030.0860000.1030.0860000.1030.0860020.1020.0860.032640.1444820.1020.0860.032640.1444860.1010.0850.096960.428480.0970.0830.124160.55776140.0930.080.208320.9408150.0880.0770.21120.9702260.0820.0730.34112 1.59432300.0710.0640.3408 1.6128370.0590.0580.34928 1.80264370.0490.0470.29008 1.460762.043689.7297216.20478即上部结构荷载792.8240.16桩端阻力比αm = 2.8 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)LL桩端阻力比αm = 2.7 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)各圆环内的桩数k Ip Is αki Ip (1-α) ki Isσz10.0940.080.015040.067200.0940.080000.0940.080000.0930.0790000.0930.080000.0930.0790020.0930.0790.029760.1327220.0920.0790.029440.1327260.0910.0780.087360.3931280.0890.0760.113920.51072140.0850.0740.19040.87024150.0810.0710.19440.8946260.0770.0680.32032 1.48512300.0670.0610.3216 1.5372370.0560.0530.33152 1.64724370.0470.0450.27824 1.39861.9129.0694815.11479即上部结构荷载792.8240.16各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz10.0850.0730.01360.0613200.0850.0730000.0850.0730000.0850.0730000.0850.0730000.0850.0730020.0850.0730.02720.1226420.0840.0730.026880.1226460.0840.0720.080640.3628880.0810.0710.103680.47712140.0790.0690.176960.81144150.0750.0660.180.8316260.0710.0630.29536 1.37592300.0630.0570.3024 1.4364370.0540.050.31968 1.554370.0460.0440.27232 1.367521.798728.5234814.20736即上部结构荷载792.8单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)L桩端阻力比αm = 2.9 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )单桩沉降计算荷载 Q ( 取长期效应作用下的单桩平均附加荷载)240.16各圆环内的桩数kIpIsαki Ip(1-α) ki Isσz10.0780.0680.012480.0571200.0780.0680000.0780.0680000.0780.0680000.0780.0680000.0780.0680020.0780.0670.024960.1125620.0770.0670.024640.1125660.0770.0670.073920.3376880.0750.0650.0960.4368140.0730.0640.163520.75264150.070.0620.1680.7812260.0660.0590.27456 1.28856300.0590.0540.2832 1.3608370.0510.0480.30192 1.49184370.0440.0420.26048 1.305361.683688.0371213.3796桩端阻力比αm = 3.0 (m = z / L ,L 为桩长 , z 为自承台底算起的计算点的深度 )L。
桩基沉降计算
桩形状:圆形
桩直径d或边长b:0.70m
桩面积Ap:0.385m2
下承台底的平均附加压力F:270450KN
天然地基平均附加应力P0:601Kpa
地上层数32地下层数1
实际承台长度Lc:30m
实际承台宽度Bc:15m
承台总面积A:450.00m2
基础长宽比Lc/Bc: 2.00
总桩数n:70
桩长L:50m
桩距Sa: 3.00m
是否规则布桩?是附加应力σz:距径比Sa/d: 4.3自重应力0.2σc:
长径比L/d:71.4沉降计算长度Zn判断:短边布桩数nb:6
C0:0.063
C1: 1.811
C2:10.381
桩基等效沉降系数ψe:0.320
平均压缩模量Es:25.2Mpa
桩基沉降计算经验系数ψ:0.598
桩基中心点沉降量S:35.93mm
注:1、对于采用后注浆施工工艺的灌注桩,桩基沉降计算经验系数
应根据桩端持力土层类别,乘以0.7(砂、砾、卵石)~0.8(黏性土、粉土)折减系数;
2、饱和土中采用预制桩(不含复打、复压、引孔沉桩)时,
应根据桩距、土质、沉桩速率和顺序等因素,乘以1.3~1.8 挤土效应系数,
土的渗透性低,桩距小,桩数多,沉降速率快时取大值。
土层沉降计算表格
162.75Mpa
162.83Mpa
OK
(z。