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Thermocryogenic buckling and stress analyses of a partially filled cryogenic tank subjected to cylindrical strip heating

机译:圆柱形带钢加热的部分填充低温罐的热致低温屈曲和应力分析

摘要

Thermocryogenic buckling and stress analyses were conducted on a horizontally oriented cryogenic tank using the finite element method. The tank is a finite-length circular cylindrical shell with its two ends capped with hemispherical shells. The tank is subjected to cylindrical strip heating in the region above the liquid-cryogen fill level and to cryogenic cooling below the fill level (i.e., under thermocryogenic loading). The effects of cryogen fill level on the buckling temperature and thermocryogenic stress field were investigated in detail. Both the buckling temperature and stress magnitudes were relatively insensitive to the cryogen fill level. The buckling temperature, however, was quite sensitive to the radius-to-thickness ratio. A mechanical stress analysis of the tank also was conducted when the tank was under: (1) cryogen liquid pressure loading; (2) internal pressure loading; and (3) tank-wall inertia loading. Deformed shapes of the cryogenic tanks under different loading conditions were shown, and high-stress domains were mapped on the tank wall for the strain-gage installations. The accuracies of solutions from different finite element models were compared.
机译:使用有限元方法,在水平定向的低温储罐上进行了深冷屈曲和应力分析。坦克是一个有限长度的圆柱壳,其两端被半球形壳盖住。该储罐在液-致冷剂填充水平以上的区域中经受圆柱形条带加热,并在填充水平以下(即,在热致冷负荷下)经受低温冷却。详细研究了冷冻剂填充量对屈曲温度和低温应力场的影响。屈曲温度和应力大小对冷冻剂填充水平相对不敏感。然而,屈曲温度对半径-厚度比非常敏感。当储罐处于以下状态时,还对储罐进行了机械应力分析: (2)内压负荷; (3)罐壁惯性载荷。显示了低温罐在不同载荷条件下的变形形状,并在罐壁上绘制了应变计装置的高应力区域。比较了来自不同有限元模型的解决方案的准确性。

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    Ko William L.;

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  • 年度 1994
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