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Compression and Creep Indices of Organic Clayey Soil

机译:有机粘土土的压缩和蠕变索引

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For construction of structures on soft clay layers, engineers must have to consider the consolidation behaviours of such soil. Due to the viscosity of clayey soils, their organic content strongly influences on consolidation behaviours as well effecting on vertical stress. Laboratory studies on soft soil have offered better understanding and thus better prognosis of these behaviour, and several related tests are performed and presented in this research. Two odometer tests were done, the first being a conventional odometer test for three soil types to find their compressibility parameters, while the second consisted of a series of long term odometer tests to find the creep coefficient for each type of soil. Seven incremental consolidation pressures were applied to each soil sample with different organic content (25 kPa, 50 kPa, 100 kPa, 200 kPa, 400 kPa, 800 kPa and 1600 kPa). A detailed study of the results obtained from this incremental loading was then undertaken. From the consolidation test, the values of different parameters such as the compression index (Cc) and secondary compression index (Ca) were obtained, and it was found that Cc and Ca values increased with increased organic content in the soil. The study also found that, generally, Ca decreases with incremental loading.
机译:对于柔软粘土层的结构,工程师必须必须考虑这些土壤的整合行为。由于粘土土壤的粘度,它们的有机含量在垂直应力下影响了对整合行为的强烈影响。软土的实验室研究提供了更好的理解,从而更好地对这些行为预后,并在本研究中进行了几种相关测试。完成了两个里程表试验,首先是一种传统的里程表测试,用于三种土壤类型寻找它们的压缩参数,而第二个是由一系列长期的里程表试验组成,以找到每种类型的土壤的蠕变系数。用不同的有机含量(25kPa,50kPa,100kPa,200kPa,400kPa,800kPa和1600kPa),将七个增量固结压力施加到每个土壤样品上。然后进行了从该增量载荷获得的结果的详细研究。从整合测试中,获得了不同参数的值,例如压缩指数(CC)和次要压缩指数(CA),发现CC和Ca值随着土壤中的有机含量增加而增加。该研究还发现,通常,CA随着增量负载而减少。

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