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Review of long seabed samplers and criteria for new sampler design

机译:审查长海床采样器和新采样器设计标准

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A cost efficient way of investigating shallow sediments and for collecting soils data for many offshore geotechnical problems, e.g. anchoring of floating structures with suction piles or evaluation of submarine slope stability, is to carry out seabed sampling to say 25 m below seabed and in addition perform seabed CPTUs to say 40 m. Based on a review of data collated from the literature and from in house project experience at the Norwegian Geotechnical Institute it was found that Kullenberg type piston core samples give poor recovery and samples, which are increasingly disturbed as penetration increase. This means that laboratory tests on these samples will give results that are not representative of in situ conditions and will give incorrect parameters for foundation design. Many different factors control the quality of the samples recovered but the need for an effectively stationary piston, a core retainer and improvements to the physical sampler parameters, e.g. diameter/wall thickness ratio, cutting edge angle, inside and outside friction are perhaps the most critical. The importance of each of these factors is discussed in detail in addition to the need for instrumentation and the way to penetrate the sampler. Recommendations are given in terms of criteria for the design of a new sampler, which the authors feel will give better results than most samplers used in practice today.
机译:调查许多近海岩土工程问题的一种经济有效的方法,用于调查浅层沉积物并收集土壤数据。用吸力桩锚固浮动结构或评估海底斜坡稳定性,是在海床以下25 m进行海床采样,另外还要进行40 m的海床CPTU。根据从文献收集的数据以及来自挪威岩土工程研究所内部项目经验的数据,我们发现,Kullenberg型活塞芯样品的回收率很差,并且随着渗透率的增加,样品受到的干扰越来越大。这意味着对这些样品的实验室测试将得出不代表原位条件的结果,并且将为基础设计提供不正确的参数。许多不同的因素控制着所回收样品的质量,但是需要一个有效固定的活塞,一个岩心保持器以及对物理采样器参数的改进,例如,直径/壁厚比,切削刃角度,内外摩擦可能是最关键的。除了对仪器的需求以及穿透采样器的方式之外,还将详细讨论每个因素的重要性。根据新采样器的设计标准给出了建议,作者认为这将比当今大多数实践中使用的采样器产生更好的结果。

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