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Case Study of a Collapse Investigation of Loess Sites Covered by Very Thick Loess-Paleosol Interbedded Strata

机译:黄土-古土壤互层层厚黄土塌陷调查的案例研究

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摘要

Young loess deposits are the most well-known collapsible soils because of their small unit masses, high void ratios, and open metastable structures. Properly assessing the collapse of loess sites covered by very thick interbedded loess-paleosol strata is complicated because the loess and paleosol layers possess significantly different permeability and collapsibility. The Tongchuan Loess Tableland is one site of such strata, and for this research, laboratory and field tests were conducted to obtain the physical and mechanical properties of the soil for each of the loess and paleosol layers. An in situ soaking test and corresponding computation were also conducted to explore the soaking process, seepage field, and collapse settlement characteristics of the site. Significant differences in collapse settlements were observed between the in situ soaking test and the computed result. The authors deduced that the strata of the test site, disturbances during extraction, drainage conditions, stress history, loading conditions, sampling interval, and magnitude of the collapse criteria could have been the reasons for the differences.
机译:年轻的黄土沉积物因其单位质量小,高孔隙率和开放的亚稳结构而成为最著名的可塌陷土壤。由于黄土和古土壤层具有明显不同的渗透率和可塌陷性,因此正确评估非常厚的黄土-古土壤层间覆盖的黄土位点的塌陷是复杂的。铜川黄土高原是这种地层的一个场所,为了进行这项研究,进行了实验室和田间试验,以获取黄土和古土壤各层的土壤的物理和机械性质。还进行了现场浸泡试验和相应的计算,以探讨该场地的浸泡过程,渗流场和塌方沉降特征。在原位浸泡试验和计算结果之间观察到塌陷沉降的显着差异。作者推断,测试地点的地层,抽取过程中的扰动,排水条件,应力历史,荷载条件,采样间隔以及塌陷标准的大小可能是造成差异的原因。

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