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首页> 外文期刊>Marine Georesources & Geotechnology >Study of the sedimentation and self-weight consolidation behavior of seafloor sediments using a radioisotope densitometer
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Study of the sedimentation and self-weight consolidation behavior of seafloor sediments using a radioisotope densitometer

机译:放射性同位素密度计海底沉积物沉降和自重固结行为研究

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In this study, settling tests were conducted to investigate the sedimentation and self-weight consolidation behavior of seafloor sediments from Isahaya Bay, Ariake Sea, Japan. During the tests, the density variations with depth and time were measured by a gamma-ray transmission radioisotope densitometer. The test results show that the settling process of the seafloor sediments can be classified into the flocculation stage, settling stage, and consolidation stage. The settling rate of the seafloor sediments in the settling stage is dependent on the temperature and initial water content, while the settling rate in the consolidation stage is independent of the temperature and initial water content. The density profile changes from a constant density profile to a linear density profile when the sedimentation process transitions to the self-weight consolidation process. The relations between the void ratio (e) and effective vertical stress (p') at very low pressures can be calculated from the measured density values, and this can be used for the analysis of the self-weight consolidation of seafloor sediments. For the seafloor sediments tested in this study, the undrained shear strength (s(u)) values are almost the same when the density values are less than 1.14 g/cm(3), and the s(u) values increase linearly with an increase in density when the density values are in the range of 1.14-1.2 g/cm(3.)
机译:本研究通过沉降试验研究了日本有明海谏早湾海底沉积物的沉降和自重固结行为。在测试过程中,通过伽马射线透射放射性同位素密度计测量密度随深度和时间的变化。试验结果表明,海底沉积物沉降过程可分为絮凝阶段、沉降阶段和固结阶段。沉降阶段海底沉积物的沉降速率与温度和初始含水量有关,而固结阶段的沉降速率与温度和初始含水率无关。当沉降过程过渡到自重固结过程时,密度分布从恒定密度分布变为线性密度分布。根据实测密度值,可以计算出极低压力下的孔隙率(e)和有效竖向应力(p')之间的关系,可用于海底沉积物自重固结的分析。对于本研究测试的海底沉积物,当密度值小于1.14 g/cm(3)时,不排水剪切强度(s(u))值几乎相同,当密度值在1.14-1.2 g/cm(3)范围内时,s(u)值随密度的增加线性增加。

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