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Interpretation of density profile of seabed sediment from nuclear density cone penetration test results

机译:从核密度锥渗透试验结果解释海底沉积物的密度分布

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摘要

The nuclear density cone penetration test (ND-CPT) is used to investigate the wet density (ρ) of soft soil deposits under the sea. In the ND-CPT, the density is determined by the count rate ratio (R_ρ) of the gamma rays detected by the detector to the gamma rays from the source. Thus, the ND-CPT measures the average wet density of the material within a spheroid volume around the central point of the source and the detector, which is designated as ρ_c. The measured ρ_c values are considerably different from the actual p of the seabed sediment because the density varies significantly with depth. We designate the layer of seabed sediment in which the density increases rapidly with depth as the "upper layer" and the layer below it as the "lower layer". A method is proposed to deduce the actual ρ profile from the measured ρ_c profile. The upper and the lower boundaries of the upper layer of the seabed sediment can be directly determined from the measured ρ_c profile as well as the distance (2b) between the gamma ray source and the detector. Based on the results of a back analysis of the measured ρ_c profile at Isahaya Bay, Ariake Sea, Japan, the density distribution in the upper layer of the seabed sediment can be approximated as a square root function of depth. Comparisons of the measured ρ_c profiles, obtained using the ND-CPT, and the actual ρ profiles, deduced by the proposed method, show that the actual ρ are obviously different from the measured ρ_c near the upper and the lower boundaries of the upper layer of the seabed sediment. The thickness of the upper layer of the seabed sediment at Isahaya Bay lies in the range of 0.05-0.55 m.
机译:核密度锥渗透试验(ND-CPT)用于研究海底软土沉积物的湿密度(ρ)。在ND-CPT中,密度由检测器检测到的伽马射线与源发出的伽马射线的计数率之比(R_ρ)确定。因此,ND-CPT测量围绕源和检测器中心点的椭球体中材料的平均湿密度,称为ρ_c。测得的ρ_c值与海底沉积物的实际p值有很大不同,因为密度随深度而变化很大。我们将密度随深度迅速增加的海底沉积物层称为“上层”,将其下方的层称为“下层”。提出了一种从测得的ρ_c轮廓推导出实际ρ轮廓的方法。海底沉积物上层的上下边界可以直接从所测得的ρ_c轮廓以及伽马射线源与探测器之间的距离(2b)确定。根据对日本有明海Isahaya湾测得的ρ_c剖面进行反分析的结果,可以将海底沉积物上层的密度分布近似为深度的平方根函数。通过使用ND-CPT获得的实测ρ_c轮廓与所提出的方法推导的实际ρ轮廓的比较表明,实际ρ与在上层上下边界附近的实测ρ_c明显不同。海底沉积物。 Is早湾海床沉积物的上层厚度为0.05-0.55 m。

著录项

  • 来源
    《Soils and foundations 》 |2013年第5期| 671-679| 共9页
  • 作者单位

    Institute of Lowland and Marine Research, Saga University, 1 Honjo-machi, Saga City, Saga 840-8502, Japan;

    Institute of Lowland and Marine Research, Saga University, 1 Honjo-machi, Saga City, Saga 840-8502, Japan;

    Department of Civil Engineering and Architecture, Saga University, 1 Honjo-machi, Saga City, Saga 840-8502, Japan;

    Institute of Lowland and Marine Research, Saga University, 1 Honjo-machi, Saga City, Saga 840-8502, Japan;

    Soil and Rock Engineering Co., Ltd., 2-21-1 Shonaisakae-machi, Toyonaka City, Osaka 561-0834, Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nuclear density cone penetration test (ND-CPT); Seabed sediment; Density profile;

    机译:核密度锥渗透试验(AND-CPT);海底沉积物;密度分布;

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