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1.
南通市南山湖综合楼基坑工程降水数值模拟分析   总被引:1,自引:1,他引:0       下载免费PDF全文
殷宝兵  周爱兆  姜彬霖 《探矿工程》2017,44(10):61-65,69
基坑降水的成功与否,关系到整个基坑的安全。南通市南山湖综合楼基坑开挖过程中虽建立了止水帷幕,但仍需对基坑降水的方案进行安全评估。采用MIDAS/GTS数值分析软件建立三维渗流模型,通过对现场单井抽水试验进行模拟分析,综合地勘报告中室内试验渗透系数和抽水试验的渗透系数,反向推演出符合工程实际的渗流边界函数和渗透系数;然后利用反推得到的计算参数,建立三维渗流模型,模拟群井抽水状态下水位降深与时间的变化关系,对群井降水效果进行分析,验证降水井设计是否合理,指导基坑土方的开挖。  相似文献   

2.
A whirlpool foundation pit is a small-diameter, deep circular pit. Because of its depth and small diameter, a large drawdown is required, and a limited number of wells can be installed inside the pit. During excavation, partially penetrating wells inside and outside the foundation pit have to be installed to lower the water level when the aquifer is too thick. However, partially penetrating wells near partially penetrating curtains cannot be treated by analytical methods. Therefore, it is necessary to use numerical methods to predict dewatering during excavation. Field experiments were performed on whirlpool foundation pit 1880 of Baosteel Group, Shanghai, China, to obtain pumping rates and drawdown, pumping with a single well and two wells in the confined aquifer. The results indicate that the drawdown inside the pit induced by pumping wells outside the foundation pit was small, whereas it was large for pumping wells inside the pit. The pumping wells inside and outside the pit had to be combined to lower the water level. A three-dimensional numerical model was developed to simulate the dewatering process. The hydraulic conductivities of the confined aquifers were inversed by using the pumping tests. Operation schedules were simulated with the corrected model for different combinations of wells inside and outside the pit. The results suggest that different schedules and operation conditions affect drawdown. The monitored results during dewatering indicate that the simulation and field measurements were in agreement. The results can be applied to similar situations.  相似文献   

3.
为了精确模拟预测松散沉积层中深基坑降水引起的地下水渗流场和地面沉降的变化特征,考虑土体孔隙度、渗透系数、储水率随地下水位下降发生的动态变化,建立了深基坑降水三维变参数非稳定渗流与太沙基一维固结理论的地面沉降耦合模型,并采用有限元数值分析方法对模型进行求解。以南京地铁三号线浦珠路站深基坑降水为例进行模拟计算。结果表明:采用15口坑内抽水井,抽水井过滤器埋深为22.0~37.0 m,基坑围护连续墙底部埋深至41.5 m为最优降水方案;不仅使基坑内地下水位满足开挖要求,又使基坑外地面沉降在控制范围内。经验证,所建立的模型合理,计算结果可靠,研究理论用于模拟预测此类地区深基坑降水引起的地下水流场变化具有较高的可信度。  相似文献   

4.
In terms of controlling groundwater in deep foundation pit projects, the usual methods include increasing the curtain depth, reducing the amount of pumped groundwater, and implementing integrated control, in order to reduce the drawdown and land subsidence outside pits. In dewatering design for confined water, factors including drawdown requirements, the thickness of aquifers, the depth of dewatering wells and the depth of cutoff curtains have to be considered comprehensively and numerical simulations are generally conducted for calculation and analysis. Longyang Road Station on Shanghai Metro Line 18 is taken as the case study subject in this paper, a groundwater seepage model is developed according to the on-site engineering geological conditions and hydrogeological conditions, the excavation depth of the foundation pit as well as the design depth of the enclosure, hydrogeological parameters are determined via the pumping test, and the foundation pit dewatering is simulated by means of the three-dimensional finite difference method, which produces numerical results that consistent with real monitoring data as to the groundwater table. Besides, the drawdown and the land subsidence both inside and outside the pit caused by foundation pit dewatering are calculated and analyzed for various curtain depths. This study reveals that the drawdown and the land subsidence change faster near the curtain with the increase in the curtain depth, and the gradient of drawdown and land subsidence changes dwindles beyond certain depths. In this project, the curtain depth of 47/49 m is adopted, and a drawdown-land subsidence verification test is completed given hanging curtains before the excavation. The result turns out that the real measurements basically match the calculation results from the numerical simulation, and by increasing the depth of curtains, the land subsidence resulting from dewatering is effectively controlled.  相似文献   

5.
In terms of controlling groundwater in deep foundation pit projects, the usual methods include increasing the curtain depth, reducing the amount of pumped groundwater, and implementing integrated control, in order to reduce the drawdown and land subsidence outside pits. In dewatering design for confined water, factors including drawdown requirements, the thickness of aquifers, the depth of dewatering wells and the depth of cutoff curtains have to be considered comprehensively and numerical simulations are generally conducted for calculation and analysis. Longyang Road Station on Shanghai Metro Line 18 is taken as the case study subject in this paper, a groundwater seepage model is developed according to the on-site engineering geological conditions and hydrogeological conditions, the excavation depth of the foundation pit as well as the design depth of the enclosure, hydrogeological parameters are determined via the pumping test, and the foundation pit dewatering is simulated by means of the three-dimensional finite difference method, which produces numerical results that consistent with real monitoring data as to the groundwater table. Besides, the drawdown and the land subsidence both inside and outside the pit caused by foundation pit dewatering are calculated and analyzed for various curtain depths. This study reveals that the drawdown and the land subsidence change faster near the curtain with the increase in the curtain depth, and the gradient of drawdown and land subsidence changes dwindles beyond certain depths. In this project, the curtain depth of 47/49 m is adopted, and a drawdown-land subsidence verification test is completed given hanging curtains before the excavation. The result turns out that the real measurements basically match the calculation results from the numerical simulation, and by increasing the depth of curtains, the land subsidence resulting from dewatering is effectively controlled.  相似文献   

6.
超高层建筑的桩基础通常会打入到深度较大的承压含水砂土层中;在承压含水层的上方通常会进行超深基坑的开挖构建超高层建筑的地下室。为了保持超深基坑的基底稳定,需要在承压含水层中进行降水施工。由于深基坑存在大量的桩基础,基桩的存在会影响降水时地下水的渗流路径,继而影响土体的渗透性状。应用室内试验研究基桩对含水层渗流阻挡作用的机制。试验采用PVC管模拟基桩,将颗粒较均匀的砂土作为试验土体,通过室内渗流试验来研究基桩对地下水渗流的影响。试验结果表明,基桩对于地下水渗流有明显的阻挡效应:基桩的数量以及布置形式会对渗透效应产生较大的影响。考虑砂土体积置换率的有效介质理论可以用来分析矩形布置的基桩对渗透系数的影响,但对梅花形布置的基桩应用有效介质理论计算所得的渗透系数会有将近20%的偏差;其原因是梅花形布置的基桩,会使渗流路径增加。基于对渗流路径的分析,提出了考虑有梅花形布置的基桩存在时等效渗透系数计算的修正方法。  相似文献   

7.
王钰  刘静 《探矿工程》2020,47(9):63-69
扬州东部综合客运枢纽地下配套工程深大基坑采用大放坡+地下连续墙+内支撑围护,场地地层为深厚强透水地层,降水井布置在坡底还是坡间平台,将直接影响降水的动态控制。本文提出了方案一(坡底布井)和方案二(坡间平台布井)2套降水方案,并利用数值模拟方法进行了比选。对比结果:虽然方案一井数和最终总涌水量略少于方案二,但是需提前降水,会造成大量水资源的浪费;而方案二可以根据基坑开挖深度的增加,逐步增加抽水井,体现了按需降水的原则。因此,认为方案二更优。类似基坑进行降水方案设计时,不应仅考虑总井数和最终总涌水量,还应考虑到不同开挖阶段,动态控制、按需降水,才能从源头上实现基坑工程的绿色施工。  相似文献   

8.
长江三角洲分布有巨厚、松散的第四纪沉积层,地下含水系统为一复合含水层系统,深基坑降水一般采用非完整井,且由于深基坑周围连续挡水墙难以深入含水层底板,所以其地下水渗流场变化极其复杂,具有明显的三维流特征。本文以上海环球金融中心深基坑降水为例,采用数值模拟方法,模拟了在多层含水层复合存在、含水层最深底板埋深达149m、基坑周围挡水连续墙埋深达34m、基坑内地下水位降深达26m的情况下的地下水三维渗流场特征,并以此为据确定出了该基坑降水的最优化方案。  相似文献   

9.
深井降水对支护结构土压力的影响   总被引:1,自引:0,他引:1  
王翠英  张鸿昌  张文巾 《岩土力学》2004,25(11):1845-1848
在目前深基坑开挖过程中,一般要采用降水措施以保证基坑干燥,便于施工。基坑降水会引起基坑内外地下水渗流,地下水状态随之改变,同时也会引起土的物理、力学性质的改变,直接影响作用于支护结构上土压力的大小。传统的水土合算和水土分算是两种极端的处理方式,在基坑降水过程中,根据具体土层选择适当的降水模型,并考虑渗流的影响,对挡土结构的设计具有重要意义。  相似文献   

10.
陆建生 《探矿工程》2014,41(12):53-61
目前基坑管井回灌设计及优化尚无专门成熟的方法,通过不同基坑回灌类型的分析,提出了基坑管井回灌设计原则及设计流程,并对回灌参数进行了探讨,对回灌可施加的最大压力进行了分析,通过285组基坑水文地质数值模型的计算,对比分析了不同渗透各向异性系数、回灌井结构、回灌井位置和保护建(构)筑物位置下的渗流特征,提出了回灌设计综合指数,从经济、技术及施工难度角度综合评估回灌对保护建(构)筑物以及对坑内降水的双重作用,指导抽灌一体化设计。  相似文献   

11.
葛鹏  胡远  左新明 《探矿工程》2019,46(4):63-69
基坑降水的成功与否,将对基坑开挖和周边环境产生重要影响,因此有必要对基坑降水方案进行评估。针对扬中金源时代购物中心基坑降水问题,采用MIDAS/GTS对基坑降水效果进行研究。首先,依据地勘报告中提供的土体渗透系数,结合单井、双井抽水试验结果,反演出MIDAS/GTS中需要的土层渗流系数和边界函数;然后利用反演得到的参数,建立了考虑回灌井补水效应的三维基坑降水效果分析模型,模拟基坑内水位降深与时间的变化关系,并对基坑降水效果进行分析和评估,以期指导土方开挖工程的施工。  相似文献   

12.
崔永高 《工程地质学报》2016,24(6):1207-1213
钻孔灌注桩后压浆后,与坑外含水层相比,基坑范围内含水层的渗透系数减小,这对基坑降水渗流场具有比较明显的影响。某广场式建筑由五幢塔楼和地下车库组成,采用桩侧后压浆钻孔灌注桩,基坑开挖深度21m,承压含水层组厚10m,透水性较强,采用敞开式完整井降水,井位主要沿基坑周边布置。在对水文地质条件进行概化后,建立了地下水三维非稳定流数值模型,进行了非均质渗流场模拟,并与均质渗流场作比较。结果表明,坑内后压浆区域的渗透系数减小后,坑内水力坡度变陡,单井涌水量减小,井数应相应增加;若模型计算域全部按注浆后的渗透系数考虑,则会严重降低补给强度、低估基坑总涌水量;在相同的降深要求下,坑内后压浆后渗透系数减小、但坑外渗透系数不变,基坑总补给量基本没有变化。现场监测与模拟结果较为一致。研究成果对类似工程地下水控制有一定的借鉴意义。  相似文献   

13.
明挖法是隧道施工中常用的一种方法,但其降水和开挖施工不可避免地会引起周围地面沉降.为了防止隧道施工对周围环境及建筑物产生严重的不良影响,地面沉降控制是检验施工支护设计合理性的关键.隧道施工造成地面沉降的主要原因有降水、开挖和支护作业,以往研究大多集中于单一因素的影响分析,为使分析结果更接近于工程实际,需将三者综合考虑,...  相似文献   

14.
现有基坑相关研究主要关注土方开挖过程引起的变形,认为围护结构变形起点是土方第1次开挖。然而,一些工程实测表明,基坑开挖前降水阶段即可引起围护结构及周边地层发生厘米级的变形。显然,未考虑开挖前变形的基坑监测数据将低估基坑施工的环境效应。为了研究基坑开挖前降水引发基坑变形的机制,开展了室内模型试验,对基坑开挖前降水过程进行了缩尺精细化模拟。通过微型降水井的设置与调控,模型试验真实再现了实际基坑降水过程中井流效应对围护结构受力变形的影响。试验过程中发现,随着降水的进行,坑外降水漏斗不断扩展,围护结构悬臂式侧移及坑外拱肩式地面沉降也随之产生。另外,降水导致墙前水压力明显减小,并诱发墙前侧向总压力重分布(以减小为主),围护结构为此发生指向坑内的悬臂式运动以寻求新的受力平衡,并通过墙后土体损失诱发坑外地层变形。  相似文献   

15.
某深大基坑位于长江下游岸边,场地地层为典型的二元结构,基坑开挖涉及的两层承压含水层间的弱透水层局部缺失,之间水力联系密切,基坑场地地质条件极为复杂,基坑施工降水直接关系到基坑工程的安全。这里将基坑分3个区,分别进行降水设计。具体降水方案:Ⅰ区两层承压含水层和Ⅱ区第一承压含水层被围护结构隔断内外水力联系,采用疏干井降水;Ⅱ区第二承压含水层未被围护结构隔断,Ⅲ区两层承压含水层水力联系密切,针对这两个区域设计了两套降水方案,方案一在Ⅱ区和Ⅲ区均布置有降水井,在Ⅱ区对第二承压含水层降水,在Ⅲ区对第一承压含水层降水;方案二仅在Ⅲ区布置降水井对第一承压含水层降水。为了更好地对降水方案进行对比分析,验证方案的可行性,对此进行了数值模拟分析,计算结果显示,两种方案均能满足降水要求,不过方案二布井数量少,基坑外水位降深较小,对周边环境影响更小,优于方案一。  相似文献   

16.
深基坑工程渗流—应力耦合分析数值模拟研究   总被引:27,自引:5,他引:27  
为了研究深开挖过程中渗流场与应力场的变化规律及其导致的基坑稳定问题,基于比奥固结理论,并将其扩展应用于弹塑性分析领域,将渗流场水力作用与应力场淹合,并通过有限单元法模型,力求得到深基坑开挖及降水过程中,开挖范围及邻近区域地面沉降等环境效应的基本规律的认识,为深基坑开挖设计与信息化施工提供借鉴。  相似文献   

17.
深基坑桩锚支护体系主动区土压力试验研究   总被引:10,自引:4,他引:6  
通过深大基坑桩锚支护体系主动区土压力现场试验,依据基坑工程时空效应理念,研究分析了在深大基坑开挖过程中桩锚支护体系的受力特性,得出了主动区土压力随开挖进程发展而变化的分布规律,对类似深大基坑支护体系设计时的土压力计算具有重要参考价值。  相似文献   

18.
史建升  徐源  李慧  阎长虹  侯珏  俞良晨  赵华新  崔王洪  徐成华  刘刚 《地质论评》2024,70(1):2024010005-2024010005
随着地下空间资源的开发利用,越来越多深基坑呈现出开挖深、规模大、形状不规则等特点,其支护结构设计复杂,施工难度大,具有明显的空间效应。本文以南京地铁某基坑工程为例,分析基坑施工对邻近桥梁的影响。其场区位于长江下游漫滩相二元结构地层分布地段,上部软土层厚度大,下部承压含水层地下水位高、水量丰富,地质条件复杂,该基坑为典型的深大异形基坑,距离某大桥的双曲拱引桥仅为7. 2 m,由于之前桥梁已遭受其他地下工程施工产生的较大变形,所以后续工程对其影响变形控制要求极高。为此,该车站基坑支护结构设计基于地下空间实际功能采用设置分隔墙分区开挖及MJS超深工法墙综合变形控制方案。本文通过有限元数值模拟计算,开展复杂环境下基坑开挖引起的围护结构及桥梁桩基的变形预测分析,计算结果显示,该深大狭长异形基坑开挖对邻近桥梁沉降变形影响显著,通过设置分隔墙分区开挖及MJS工法墙进行变形控制,能够较好地控制基坑的空间效应,减少“长边效应”、“异形效应”等对桥梁沉降变形的影响。通过现场基坑开挖过程实际监测结果,验证这一综合变形控制方案的可行性。该研究成果对于类似复杂地质条件下深大狭长异形基坑的支护及施工设计具有很好的借鉴意义。  相似文献   

19.
竺新强  马强 《江苏地质》2019,43(2):315-321
长江漫滩地区第四系是一个巨厚的复杂含水体,地下水丰富,对深大基坑施工影响极大。南京梅子洲过江通道连接线及青奥轴线地下交通系统工程位于长江下游漫滩,基坑最大开挖深度为27.5 m。为满足基坑降水设计及施工要求,勘察时选择有代表性的地段布置了3组抽水试验井,对潜水含水层及承压水含水层进行抽水试验,根据试验井类型和边界条件,选用潜水完整井稳定流、承压水完整井稳定流及非稳定流、承压水非完整井稳定流及非稳定流等多种地下水计算模型进行参数计算并综合分析,为设计提供水文地质参数,并实地验证了参数的合理性。  相似文献   

20.
When pumping is conducted in confined aquifer inside excavation pit(waterproof curtain),the direction of the groundwater seepage outside the excavation changes from horizontal to vertical owing to the existence of the curtain barrier.There is no analytical calculation method for the groundwater head distribution induced by dewatering inside excavation.This paper first analyses the mechanism of the blocking effects from a close barrier in confined aquifer.Then,a simple equation based on analytical solution is proposed to calculate groundwater heads inside and outside of the excavation pit with waterproof curtain(hereafter refer to close barrier)in a confined aquifer.The distribution of groundwater head is derived according to two conditions:(i)pumping with a constant water head,and(ii)pumping with a constant flow rate.The proposed calculation equation is verified by both numerical simulation and experimental results.The comparisons demonstrate that the proposed model can be applied in engineering practice of excavation.  相似文献   

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