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Utilizing building foundations as micro-scale compressed air energy storage vessel: Numerical study for mechanical feasibility

机译:将建筑地基用作微型压缩空气储能容器:机械可行性的数值研究

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摘要

This paper explores a new idea of using building pile foundations as compressed air energy storage (CAES) vessels. A critical assessment is made to determine whether the foundation maintains its primary function as a load-bearing element when subjected to the internal pressurization and depressurization cycle. This is achieved by investigating the behavior of a closed-ended steel pipe pile, subjected to various axial structural loads from building weight, under the pressure cycle using finite element analysis. Particular emphases are placed on the investigation of 1) axial displacements of the CAES pile and 2) developments of axial and hoop stresses in a pile during the pressure cycle. Results from the numerical analyses imply that stress boundary conditions developed along the pile due to the application of the structural load before pressurization play a major role in the mechanical behavior of the CAES pile. Under working loads, induced displacements at the pile head during pressurization are found to be within tolerable limits allowed for typical building foundations. Furthermore, the analysis results show that the axial and hoop stresses in the CAES pile wall do not exceed the yield strength of the high-grade steels during pressurization.
机译:本文探讨了使用建筑桩基作为压缩空气储能(CAES)容器的新思路。进行关键评估以确定基础在经受内部加压和减压循环后是否保持其作为承重元件的主要功能。这是通过使用有限元分析方法研究闭端钢管桩在压力循环下承受来自建筑重量的各种轴向结构载荷的行为而实现的。重点放在以下方面:1)CAES桩的轴向位移和2)在压力循环过程中桩中的轴向应力和环向应力的发展。数值分析的结果表明,由于在施加压力之前施加结构载荷,沿桩身形成的应力边界条件在CAES桩的力学行为中起主要作用。在工作载荷下,发现加压过程中桩头处的感应位移在典型建筑基础允许的允许范围内。此外,分析结果表明,在加压过程中,CAES桩壁中的轴向应力和环向应力均不超过高级钢的屈服强度。

著录项

  • 来源
    《Journal of Energy Storage》 |2020年第4期|101225.1-101225.14|共14页
  • 作者

  • 作者单位

    Chungnam Natl Univ Dept Civil Engn Daejeon South Korea;

    Univ Nebraska Lincoln Dept Civil & Environm Engn 1110 S 67th St Omaha NE 68182 USA;

    Bradley Univ Dept Civil Engn & Construct 1501 W Bradley Ave Peoria IL 61625 USA;

    Texas Tech Univ Dept Civil Environm & Construct Engn 911 Boston Ave Lubbock TX 79409 USA;

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

    Compressed air energy storage; Building foundation; Pipe pile; Finite element analysis; Renewable energy;

    机译:压缩空气储能;建筑基础;管桩;有限元分析;再生能源;

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