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THE GRANULAR STRUCTURE OF TWO MARINE CARBONATE SEDIMENTS

机译:两种海洋碳酸盐沉积物的颗粒状结构

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Calcareous sediments are prominent throughout the low-latitudinal offshore environment and have been known to be problematic for offshore foundation systems. These fascinating soils consist largely of the skeletal remains of single-celled marine organisms (plankton and zooplankton) and can be as geologically complex as their onshore siliceous counter parts. To enable an adequate understanding of their characteristics, in Particular, their intra-granular micro-structure, it is important that geotechnical engineers do not forget about the multifaceted biological origins of these calcareous sediments and the different geological processes that created them. In this paper, the 3D models of soils grains generated from micro-computed tomography scans, scanning electeron microscope images, and optical microscope images of two calcareous sediments from two different depositional environments are presented and their geotechnical implications discussed. One is a coastal bioclastic sediment from Perth, Western Australia that is geologically similar to carbonate sediments typically used in micro-mechanics and particle crushing studies in the literature. The other is a hemipelagic sediment from a region of the North West Shelf of Australia that has historically been geotechnically problematic for engineers. The results show there is a marked difference between coastal bioclastic and hemipelagic sediments in terms of geological context and the associated particle micro-structures. This brings into question whether a coastal bioclastic calcareous sediment is a good micro-mechanical substitute for a hemipelagic one.
机译:钙质沉积物在整个低纬度的海上环境中突出,并且已知对海上基础系统有问题。这些迷人的土壤主要由单细胞海洋生物(浮游生物和浮游动物)的骨骼遗骸组成,并且可以作为其陆上硅质柜台的地质复杂。为了能够充分了解其特征,特别是其粒状微结构,重要的是,岩土工程师不会忘记这些钙质沉积物的多方面生物起源以及创造它们的不同地质过程。本文介绍了从微型计算机断层扫描扫描,扫描素显微镜图像和两种不同沉积环境的两种钙质沉积物的扫描沉积物产生的土壤谷物的3D模型,并讨论了其岩土学意义。一个是来自西澳大利亚州珀斯的沿海生物旋气沉积物,这些沉积物与通常用于文献中的微型机械和粒子压碎研究中的碳酸盐沉积物。另一个是来自澳大利亚西北架子的区域的六层沉积物,历史上一直是工程师的岩土问题。结果表明,在地质背景和相关颗粒微结构方面存在沿海生物塑料和六骨沉积物之间的显着差异。这使得沿海生物弹性钙质沉积物是一种良好的微机械替代六层骨质替代品。

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