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RISK ASSESSMENT AND QUALITY CONTROL ON GROUTED WATER-RETAINING LAYERS BY OBSERVATIONAL ENGINEERING

机译:观测工程灌浆水挡层的风险评估和质量控制

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As part of the Schiphol-Amsterdam-Aimere project, the largest aqueduct in Europe is being built in order for the Al motorway to cross the Vecht river. The Al consists of 12 lanes and the total width of the aqueduct will be 65 m (213 ft). The total length of the structure will be 620 m (2035 ft). Speed of construction is essential for the DBFM-contract, which forms the primary reason for choosing a building method with a horizontal water retaining barrier created by low pressure grouting. After final checks on the water tightness of the silica based layer (softgel), excavation to a depth of approximately 12 m (40 ft) below the water table could be started in order to build the aqueduct.This paper presents a new approach for the calculation of the required grout volumes needed to ensure a "softgel" layer without gaps or holes. The approach applies measurement of deviations due to execution aspects in a probabilistic model. With this model, one is able to study the effects in a field application, i.e. multiple rows of grouted spheres. The results are visualized in order to analyze the risk of holes more easily. It is evident that the existence of a hole means a major leakage. By completing multiple runs, the strategy for grout volumes can be adjusted to minimize this risk.
机译:作为史基霍普尔 - 阿姆斯特丹 - Aimere项目的一部分,欧洲最大的渡槽正在建造,以便为Al Motorway穿过Vecht河。 Al由12个车道组成,渡槽的总宽度为65米(213英尺)。结构的总长度为620米(2035英尺)。建筑速度对于DBFM-Contress是必不可少的,这构成了选择通过低压灌浆产生的水平水挡土屏幕的建筑方法的主要原因。在最终检查基于二氧化硅的层(Softgel)的水密封性后,可以启动挖掘到水位下方约12米(40英尺)的深度,以便构建渡槽。本文提出了一种新方法计算所需的灌浆容积,以确保没有间隙或孔的“软胶质”层。该方法适用于概率模型中的执行方面引起的偏差的测量。利用该模型,人们能够研究现场应用中的效果,即,多排灌浆球。结果可视化,以便更容易地分析孔的风险。很明显,洞的存在意味着一个重大泄漏。通过完成多个运行,可以调整灌浆卷的策略以最大限度地减少这种风险。

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