生物改良沿海土壤的承载力和地基沉降

Shamshad Alam, Anhar Yousuf Wani
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引用次数: 0

摘要

在海洋上建造地基,土壤沉积物容易产生过度沉降,地基建造十分困难。尽管最常见的做法是在这些地区建造筏式地基,即使是低层建筑,但在一些建筑中仍可观察到过度沉降。因此,在本研究中,通过使用两种不同类型的生物聚合物(如瓜尔豆胶和黄原胶)对海洋土壤进行改性,对其进行了实验室研究。对使用 1% 和 1.5% 生物聚合物改良的土壤的岩土特性进行了评估,并将所获得的特性用于沉降分析。在沉降分析过程中,地基土壤模型被创建为分层土壤,因为表层已被生物改性土壤取代。通过改变改良土层的厚度以及改良剂的类型和比例,创建了多个组合土层。沉降分析是在 settle 3D 软件中进行的,结果发现生物聚合物改性土壤能有效控制地基沉降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bearing capacity and the settlement of foundation on biomodified coastal soil
Construction of the foundation on the marine the soil deposit is susceptible to excessive settlement and the construction of foundation is difficult. Although, the most common practice is to construct the raft foundation in these regions even for the low-rise building, excessive settlement can be observed in several building. So, in the present study, laboratory investigations have been done on the marine soil by modifying it with two different type of biopolymer such as Guar gum and Xanthan gum. The geotechnical properties of the soil modified with 1% and 1.5% biopolymer has been evaluated and the obtained properties has been used for settlement analysis. During the settlement analysis, the foundation soil model has been created as layered soil because the top layer has been replaced by biomodified soil. Several combi-nations have been created by varying the thickness of modified soil layer and the type and percentage of modifying agent. The settlement analysis has been performed in the settle 3D software and the biopolymer modification of soil has been found effective in controlling the foundation settlement.
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