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Soil structure interaction of circular footings on layered soil: first results

机译:圆形基础对分层土壤的土壤结构相互作用:第一篇

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Civilisation and migration result to the exploration of new construction areas to meet the needs of society for housing and other infrastructure and lifelines. Due to diminishing resources, problematic sites in terms of geotechnics are increasingly used for construction. In an Alpine environment these problematic sites are often located in deposits of former glacial lakes. Due to glacial and postglacial sedimentary deposition processes, soil frequently consists of layers of granular materials of varying elevation and soft clays. The uncertainty in design of geotechnical structures on those soil strata leads to the use of high factors of safety in the design work. It is obvious, that the design methods in use do not comply with reality. For example the method of calculating the ultimate limit state is not suitable for the specific circumstances of layered soil strata. Also, well-known stress distribution assumptions are valid for the homogeneous half space only and little is known about the background of determining the serviceability state. In consequence only rough assumptions are being done and a resulting design will be too safe and thus expensive - or even worse - failure occurs.
机译:文明和移民对新建筑领域的探索,以满足住房和其他基础设施和生命线社会的需求。由于资源递减,岩土技术方面的有问题的网站越来越多地用于建筑。在高山环境中,这些有问题的位点通常位于前冰川湖泊的沉积物中。由于冰川和后纤维沉积沉积过程,土壤经常由不同高度和软粘土的粒状材料层组成。土壤层岩土结构设计的不确定性导致使用设计工作中安全性的高因素。显而易见的是,使用的设计方法不符合现实。例如,计算最终极限状态的方法不适用于层状土层的具体情况。而且,众所周知的应力分布假设对于均匀的半空间仅对均匀的半空间有效,并且关于确定可靠性状态的背景知之甚少。因此,只完成粗糙的假设,所产生的设计将太安全,因此昂贵 - 甚至更糟糕的发生。

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