太原理工大学水利科学与工程学院,山西 太原 030024
高 鹏(1996—),男,硕士。主要从事新型锚固结构的大变形有限元研究。E-mail:1648207739@qq.com
张雷克(1984—),男,副教授。主要从事水轮机发电机组动力学及水电站厂房结构稳定性分析工作。E-mail:zhangleike@tyut.edu.cn
收稿:2022-04-22,
修回:2022-06-08,
纸质出版:2023-08-28
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高鹏,张雷克,赵燕兵.板锚在双层黏土中埋深损失的大变形有限元分析[J].防灾减灾工程学报,2023,43(04):658-665.
GAO Peng,ZHANG Leike,ZHAO Yanbing.Large Deformation Finite Element Analysis on Buried Depth Loss of Plate Anchors in Double‑layer Clay[J].Journal of Disaster Prevention and Mitigation Engineering,2023,43(04):658-665.
高鹏,张雷克,赵燕兵.板锚在双层黏土中埋深损失的大变形有限元分析[J].防灾减灾工程学报,2023,43(04):658-665. DOI: 10.13409/j.cnki.jdpme.20220422003.
GAO Peng,ZHANG Leike,ZHAO Yanbing.Large Deformation Finite Element Analysis on Buried Depth Loss of Plate Anchors in Double‑layer Clay[J].Journal of Disaster Prevention and Mitigation Engineering,2023,43(04):658-665. DOI: 10.13409/j.cnki.jdpme.20220422003.
海洋工程中,海床土体分层现象对吸力嵌入式板锚(SEPLA)在海床中的旋转调节过程有着不可忽视的影响。基于耦合的欧拉‑拉格朗日(CEL)法,建立起用于分析板锚在双层黏土中埋深损失的有限元模型。通过与已有离心机试验及数值计算结果对比,验证模型的有效性。在板锚初始埋深不变的情况下,考察不同系缆点距上下层土体分界线距离(
d
)及强度比(
s
u1
/s
u2
)对板锚在双层黏土中埋深损失的影响,通过分析板锚周围土体的流动机制,明确了锚在双层黏土中埋深损失增大的原因,并建立起板锚埋深损失经验公式。结果表明,在
s
u1
/s
u2
<
1的双层黏土中,随着
d
的增大,板锚的埋深损失先增大后减小,并存在一极大值Δ
Z
max
,该极值比板锚在下层均质土中埋深损失大74.2% ~ 81.1%,在工程中较为危险;在
s
u1
/s
u2
>
1的双层黏土中,随着
d
的增大,板锚的埋深损失逐渐减小;
d
≤-0.5
B
与
d
≥1
B
时,板锚的旋转过程分别仅受上层土体与下层土体的影响。
In offshore engineering, the stratification of seabed soil has an important influence on the keying process of suction embedded plate anchor (SEPLA) in the seabed. Based on the coupled Eulerian-Lagrangian (CEL) method, the finite element analysis model is established for analyzing the embedment loss of plate anchors. By comparing the results of the centrifuge test and numerical method, the efficiency of the finite element model is verified. With the same initial buried depth, the embedment loss of plate anchors is analyzed considering the influences of the distance between the shackle and the soil boundary (
d
) and the strengths ratio of the overlying soil to the underlying soil (
s
u
1
/
s
u
2
). By analyzing the soil flow mechanism around plate anchors, the reason for the increase of embedment loss is identified. In addition, an empirical formula is established for the embedment loss of plate anchors. It concludes that for the double-layer clay of
s
u
1
/
s
u
2
<
1, the buried depth of the anchor increases and then decreases as the value of d increases, and there exists a maximum value of Δ
Z
max
, which is 74.2%~81.1% larger than the embedment loss of the anchor in the uniform soil, indicating a more dangerous situation in the engineering practice. For the double-layer clay of
s
u
1
/
s
u
2
>
1, the buried depth of the anchor decreases as the value of d increases. For
d
≤-0.5B and
d
≥1
B
, the keying of plate anchors is only affected by the overlying and underlying soil, respectively.
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