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Buckling analysis of large scale oil tanks with a conical roof subjected to harmonic settlement

机译:具有谐波沉降的圆锥形屋顶大型油罐的屈曲分析

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摘要

This work deals with the buckling behavior of large scale oil tanks with a conical roof subjected to harmonic settlement. Firstly, the buckling behavior and the critical harmonic settlement of the tank with the conical roof for different wave numbers are analyzed. The results show that buckling occurs on the roof when the wave number is small, while it changes to the shell when the wave number is large. Also, for the original tank, the critical harmonic settlement decreases greatly for a small wave number, while the critical harmonic settlement decreases slightly for large wave numbers. Then, the parametric studies are conducted including the height-to-radius ratio, the radius-to-thickness ratio, the slope and the thickness of the conical roof. For the height-to-radius ratio, when the wave number is small, the critical harmonic settlement depends not only on the h/r ratio but also on the wave number. However, when the wave number is large, the critical harmonic settlement versus h/r ratio is monotonically increasing. For the radius-to-thickness ratio, for a small wave number, the critical harmonic settlement is not only related to the r/t ratio, but to the wave number as well. However, for large wave numbers, the critical harmonic settlement versus r/t ratio is monotonically decreasing. For the slope of the conical roof, when the wave number is small, in general, the critical harmonic settlement increases with the slope. However, when the wave number is large, the critical harmonic settlement is almost independent on the slope. For the thickness of the conical roof, for a small wave number, the critical harmonic settlement increases with the thickness of the conical roof. However, for large wave numbers, the critical harmonic settlement is almost independent on the thickness of the conical roof.
机译:这项工作涉及具有谐波沉降的圆锥形屋顶的大型油罐的屈曲行为。首先,分析了不同波数下具有圆锥形顶盖的储罐的屈曲行为和临界谐波沉降。结果表明,当波浪数较小时,屈曲发生在屋顶,而当波浪数较大时,屈曲发生在壳体上。同样,对于原始油箱,临界谐波沉降对于小波数会大大降低,而临界谐波沉降对于大波数会略有下降。然后,进行参数研究,包括高度与半径之比,半径与厚度之比,圆锥形屋顶的坡度和厚度。对于高半径比,当波数小时,临界谐波沉降不仅取决于h / r比,还取决于波数。但是,当波数很大时,临界谐波沉降与h / r的比值会单调增加。对于半径/厚度比,对于小波数,临界谐波沉降不仅与r / t比有关,而且与波数有关。但是,对于大波数,临界谐波沉降与r / t的比值单调下降。通常,对于圆锥形屋顶的坡度,当波数较小时,临界谐波沉降随坡度增加。但是,当波数很大时,临界谐波沉降几乎与斜率无关。对于圆锥形屋顶的厚度,对于小波数,临界谐波沉降随圆锥形屋顶的厚度而增加。然而,对于大波数,临界谐波沉降几乎与圆锥形屋顶的厚度无关。

著录项

  • 来源
    《Thin-Walled Structures》 |2012年第2012期|p.143-148|共6页
  • 作者单位

    Institute of Process Equipment, Zhejiang University, Hangzhou 310027, China;

    Institute of Process Equipment, Zhejiang University, Hangzhou 310027, China;

    Institute of Process Equipment, Zhejiang University, Hangzhou 310027, China;

    Institute of Process Equipment, Zhejiang University, Hangzhou 310027, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    buckling; tank; conical roof; harmonic settlement;

    机译:屈曲罐;圆锥形屋顶谐波沉降;

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