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Piled embankments in soft estuary clay - Experience from design and field measurements for redevelopment of harbour areas in Northern Germany

机译:软呼口粘土的堆积 - 德国北部港口地区重建的设计和现场测量的体验

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For nearly all redevelopment or reclamation projects of harbour areas soil improvement techniques are required due to poor subsoil conditions. Piled embankments have become popular due to the advantage of high robustness, low settlements and influences on existing buildings and infrastructural measures and, last but not least, acceptable costs. Certain progress has been made in the last 10 years by contributions of University of Kassel, Germany, leading to the design procedure given by the German EBGEO, and since the last five years of DETARES, the Netherlands, giving further input to understanding and therefore optimization. Experience from project engineering and designing certain constructions as well as execution, not only on "the green field" but under difficult conditions, as well as field measurements and monitoring, form the basis for actual design procedures. After several years (or decades) of using this complex geotechnical construction with interaction of soil improvement measures (piles or columns), spanning and supporting reinforcement, arching embankment soil and influence of cyclic/dynamic loading a safe design procedure is already established. Field measurements and monitoring results are used to improve the understanding of full scale constructions and practical validation of design procedures.
机译:由于港口地区的几乎所有重建或回收项目,因此需要贫困的底土条件来改进技术。由于高稳健性,低定居点和对现有建筑物和基础设施措施的影响,并且最后但并非最不重要,可接受的成本,占据了堤道变得很受欢迎。在德国卡塞尔大学的贡献中,在过去的10年里取得了某些进展,导致德国ebgeo的设计程序,自荷兰的最后五年以来,从荷兰的脱水之后,提供了进一步的意见,并因此提供了优化。项目工程和设计某些建筑的经验以及执行,而不仅仅是在“绿色领域”,而且在困难的条件下,以及现场测量和监测,形成实际设计程序的基础。经过几年(或数十年)的使用这种复杂的岩土工程,通过土壤改进措施(桩或柱)的相互作用,跨越和支撑钢筋,拱形路堤土壤和循环/动态装载的影响安全设计程序已经建立。现场测量和监测结果用于改善对全规模结构的理解和设计程序的实际验证。

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