Investigation on the mechanical properties and mechanical stabilities of pipewall hydrate deposition by modelling and numerical simulation

被引:24
作者
Song, GuangChun [1 ]
Li, YuXing [1 ]
Wang, WuChang [1 ]
Jiang, Kia [1 ]
Shi, Zhengzhuo [1 ]
Yao, Shupeng [1 ]
机构
[1] China Univ Petr, Shandong Key Lab Oil Gas Storage & Transportat Sa, Qingdao 266580, Shandong, Peoples R China
关键词
Pipewall hydrate deposition; Mechanical properties; Mechanical stabilities; Modelling; Numerical simulation;
D O I
10.1016/j.ces.2018.07.055
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The mechanical properties and mechanical stabilities of pipewall hydrate deposition are of great importance to the prevention and removal of pipeline hydrate plugging. In this paper, the mechanical properties and mechanical stabilities of pipewall hydrate deposition are quantitatively investigated by modelling and numerical simulation. First, a structural model for pipewall hydrate deposition is established based on particle packing theory. Using this structural model, the main mechanical parameters of pipewall hydrate deposition can be calculated. Then, numerical simulations using finite element method and ANSYS Mechanical APDL 14.5 are conducted based on the calculated mechanical parameters. Through the simulations, the structure deformation, internal stress distribution and failure of pipewall hydrate deposition when it is under the action of external forces are studied and the influences of flow rate, deposition thickness and deposition length are investigated. The results of this paper can provide guidance for pipeline flow assurance. (C) 2018 Elsevier Ltd. All rights reserved.
引用
收藏
页码:477 / 487
页数:11
相关论文
共 50 条
  • [21] Modelling and Simulation of Mechanical Gearbox Vibrations
    Furch, J.
    Glos, J.
    Nguyen, T. T.
    PROCEEDINGS OF THE 20TH INTERNATIONAL SCIENTIFIC CONFERENCE TRANSPORT MEANS 2016, 2016, : 133 - 139
  • [22] Study on the Mechanical Properties of the Tetrahydrofuran Hydrate Deposit
    Lu Xiaobing
    Wang Li
    Wang Shuyun
    Li Qingping
    PROCEEDINGS OF THE EIGHTEENTH (2008) INTERNATIONAL OFFSHORE AND POLAR ENGINEERING CONFERENCE, VOL 1, 2008, : 57 - +
  • [23] Physical and mechanical properties of fused deposition modelling PLA/ carbon dot nanocomposites
    Campuzano, Alberto Jorge Baeza
    Rezende, Rafael Barbosa
    Taborda, Nestor Cifuentes
    dos Santos, Julio Cesar
    Pereira, Fabiano Vargas
    Panzera, Tulio Hallak
    MATERIALS TODAY COMMUNICATIONS, 2024, 40
  • [24] Numerical simulation of the influence of particle shape on the mechanical properties of rockfill materials
    Han, Hongxing
    Chen, Wei
    Huang, Bin
    Fu, Xudong
    ENGINEERING COMPUTATIONS, 2017, 34 (07) : 2228 - 2241
  • [25] Numerical Simulation of Dynamic Mechanical Properties of Concrete under Uniaxial Compression
    Peng, Yijiang
    Wang, Qing
    Ying, Liping
    Kamel, Mahmoud M. A.
    Peng, Hongtao
    MATERIALS, 2019, 12 (04)
  • [26] Numerical Simulation of Mechanical Properties of Soil Considering the Effect of Internal Erosion
    Li, Mao-Wen
    Hu, Sheng-Liang
    Tong, Chen-Xi
    MATHEMATICS, 2023, 11 (13)
  • [27] Mechanical properties of nodular natural gas hydrate-bearing sediment
    Jiang, Yujing
    Zhang, Ruiqi
    Ye, Ruijie
    Zhou, Kang
    Gong, Bin
    Golsanami, Naser
    ADVANCES IN GEO-ENERGY RESEARCH, 2024, 11 (01): : 41 - 53
  • [28] Mechanical Analysis of Woven Composites Through Experimental Investigation and Multiscale Numerical Simulation
    Guangqiang Fang
    Peng Qu
    Zhengli Cao
    Feizhou Shi
    Fibers and Polymers, 2022, 23 : 1440 - 1453
  • [29] Predicting the evolution of mechanical and diffusivity properties of cement pastes and mortars for various hydration degrees - A numerical simulation investigation
    Bernard, Fabrice
    Kamali-Bernard, Siham
    COMPUTATIONAL MATERIALS SCIENCE, 2012, 61 : 106 - 115
  • [30] Numerical Investigation of Size and Chirality Effects on Mechanical Properties of Graphene Nanoribbons
    Shu, Yang
    Qi, Lehua
    Sun, Zhenfeng
    Li, Hejun
    2012 INTERNATIONAL CONFERENCE ON MANIPULATION, MANUFACTURING AND MEASUREMENT ON THE NANOSCALE (3M-NANO), 2012, : 88 - 92