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51.
南四湖的形成及水环境演变   总被引:16,自引:0,他引:16  
采用重力活塞取样器在南四湖的独山湖和微山湖分别采取了两个湖底沉积剖面的样品。通过对湖底沉积物高分辨率的粒度、矿物、磁化率、有机碳、色素等环境指标和沉积年代学的综合研究 ,结合研究区的历史文献资料 ,探讨了南四湖形成近 2 5ka以来的水环境演变过程。研究表明 ,南四湖的形成和发展可分为 4个阶段 :初时 ,湖区为古泗水及其沿岸平原 ;西汉时期古泗水中下游段形成分散的湖沼地 ;唐—明代受黄河夺泗入淮和开挖京杭运河等人类活动的影响 ,湖沼扩张、合并 ;清同治 1 1年黄河大决于东明后 ,先后出现的南阳、昭阳、独山、微山四湖合并为统一的南四湖。  相似文献   
52.
Engineering geological mapping was carried out, at a scale of 1:100,000, in the Fortaleza Metropolitan Region, located in northeastern Brazil, to provide engineering geological information as an aid in planning land use and occupation. In this study, eight basic maps were produced drawing: urban areas, lithology, unconsolidated materials in addition to geomorphological map showing slopes, water resources, engineering geological zoning and distribution of geological–geotechnical environmental problems based on information collected through field and laboratory investigations. The region was divided into nine engineering geological zones analyzed in terms of geohazard susceptibility and foundation, excavation and waste disposal conditions.  相似文献   
53.
南京地铁许府巷站深基坑工程与监测   总被引:4,自引:0,他引:4  
南京许府巷地铁站深基坑工程采用地下连续墙围护,明挖顺做法施工。地下连续墙接头采用预制钢筋砼接头桩连接止水,两端头井辅以深层搅拌桩加固地基。基坑开挖时进行墙体位移、轴力、临近建筑物沉降变形监测,保证了安全施工。  相似文献   
54.
The excavated height of the left bank slope of the diversion power system intake in Jinchuan hydropower station is about 16o m. The stability and safety of the slope during construction and its operation/utilization become one of the most important geological engineering problems. At the same time, it is also crucial to select a safe and economic excavation gradient for the construction. We studied the problem of how to select a safe and economic slope ratio by analyzing the geological condition of the high slope, including the lithology, slope structure, structural surface and their combinations, rock weathering and unloading, hydrology, and the natural gradient. The study results showed that the use of an excavation gradient larger than the gradient observed during site investigation and the gradient recommended in standards and field practice manuals is feasible. Then, we used the finite element method and rigid limit equilibrium method to evaluate the stability of the excavation slope under natural, rainstorm and earthquake conditions. The calculated results showed that the excavated slope only has limited failure, but its stability is greatly satisfactory. The research findings can be useful in excavation and slope stabilization projects.  相似文献   
55.
本文对通过对仪长管道线路测量勘察、水文地质、河流、冲沟穿跨越勘测存在的问题进行了分析,并提出了相应的改进措施和建议,旨在加强对管道建设勘测阶段的管理,提高勘测水平,达到优化设计和投资的目的。  相似文献   
56.
程亮 《城市地质》2016,(4):106-111
以某狭小场区超深基坑为例,详细的介绍了该项目的土方施工方案和各施工阶段相应的施工措施。探讨了利用常规运土车辆和挖掘机联合作业,通过多方面的施工措施完成了狭小场区基坑开挖的技术难题。通过妥善处理与支护施工交叉作业场地占用问题,分步分段进行开挖作业,优化布置场区内走向和坡度,合理安排好单步开挖深度及范围,采用分区块循环开挖的方法顺次推进,合理选择土方出运坡道的构筑材料,合理安排土方坡道改移作业时间,及时对坡道进行恢复,在最大限度的减少土方出运停歇时间的基础上,使场地内无坡道土方间歇期与支护施工各工序必要等待时间能够尽量协调一致。很好的保证了在狭小场地条件下按期完成既定土方施工计划,对今后同类项目的实施提供一定的帮助。  相似文献   
57.
This paper presents time-dependent response of a cylindrical borehole in a poroelastic medium with an excavation disturbed zone. The general solutions are derived based on Biot’s theory of poroelasticity by employing Laplace and Fourier transforms. Both shear modulus and permeability coefficient are assumed to be changed from their original values in the disturbed zone. The general solutions are employed to formulate boundary value problems corresponding to a borehole subjected to axisymmetric loading applied at its surface, and contact problems of a rigid cylindrical plug in a borehole. Selected numerical results are presented to portray the influence of poroelastic effects and the excavation disturbed zone.  相似文献   
58.
胡光云 《江苏地质》2014,38(1):159-164
以南京水游城深基坑工程的地质环境和周边敏感环境为出发点,探讨了该深基坑工程的设计原则、支护结构型式、对周边敏感环境保护和施工变形控制的措施,利用Plaxis软件对深基坑北侧敏感环境的开挖效应进行了数值模拟。结果显示:传统的基坑支护形式仍是深基坑工程变形控制首选方法;周边环境敏感、施工场地狭小的基坑,施工前可对周边敏感建(构)筑物地基进行加固;设计时可在支撑梁上设置材料堆放场地和栈桥,及在基坑内设置挖土操作平台;数值模拟能很好地预测深基坑支护结构和土体在施工过程中的变形;根据场地土体基本性质、周边敏感环境特性,因地制宜,使设计、施工方案更加优化。  相似文献   
59.
This study presents the probabilistic analysis of the inverse analysis of an excavation problem. Two techniques are used during two successive stages. First, a genetic algorithm inverse analysis is conducted to identify soil parameters from in situ measurements (i.e. first stage of the construction project). For a given tolerable error between the measurement and the response of the numerical model the genetic algorithm is able to generate a statistical set of soil parameters, which may then serve as input data to a stochastic finite element method. The second analysis allows predicting a confidence interval for the final behaviour of the geotechnical structure (i.e. second stage of the project). The tools employed in this study have already been presented in previous papers, but the originality herein consists of coupling them. To illustrate this method, a synthetic excavation problem with a very simple geometry is used.  相似文献   
60.
Performance observation is a necessary part of the design and construction process in geotechnical engineering. For deep urban excavations, empirical and numerical methods are used to predict potential deformations and their impacts on surrounding structures. Two inverse analysis approaches are described and compared for an excavation project in downtown Chicago. The first approach is a parameter optimization approach based on genetic algorithm (GA). GA is a stochastic global search technique for optimizing an objective function with linear or non-linear constraints. The second approach, self-learning simulations (SelfSim), is an inverse analysis technique that combines finite element method, continuously evolving material models, and field measurements. The optimization based on genetic algorithm approach identifies material properties of an existing soil model, and SelfSim approach extracts the underlying soil behavior unconstrained by a specific assumption on soil constitutive behavior. The two inverse analysis approaches capture well lateral wall deflections and maximum surface settlements. The GA optimization approach tends to overpredict surface settlements at some distance from the excavation as it is constrained by a specific form of the material constitutive model (i.e. hardening soil model); while the surface settlements computed using SelfSim approach match the observed ones due to its ability to learn small strain non-linearity of soil implied in the measured settlements.  相似文献   
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