月牙肋钢岔管体形参数对围岩分担率的影响研究

    Research on the Influence of Geometric Parameters of Crescent-Rib Steel Bifurcation Pipe on Surrounding Rock Load-Bearing Ratio

    • 摘要: 为揭示月牙肋钢岔管体形变化对围岩分担率的影响规律,明确扩大率、肋宽比、分岔角等关键参数调控效应,以某工程主管半径为2.5 m的月牙肋钢岔管为研究对象,基于ANSYS建立三维有限元模型,系统分析不同体形参数下钢岔管的应力演化和围岩分担率的变化特征。结果表明:(1)随着扩大率的增大,平均围岩分担率逐渐增大,但增幅较小,同时肋板中央截面LB点应力显著增大,明管工况下管壳应力波动较明显;(2)随着肋宽比增大,平均围岩分担率基本保持稳定,管壳特征点应力变化平缓,LB点应力显著减小,且肋宽比小于0.35时,LB点应力下降速率更快;(3)随着分岔角增大,围岩平均分担率减小,减幅逐渐减小,LB点应力显著下降,但管壳多数特征点应力呈上升趋势。

       

      Abstract: To investigate the influence mechanism of geometric parameter variations of crescent-rib steel bifurcation pipes on the surrounding rock load-bearing ratio and clarify the regulatory effects of key parameters (expansion ratio, rib width ratio, and bifurcation angle), a three-dimensional finite element model was established based on ANSYS, taking a practical project with a main pipe radius of 2.5 m as the research object. Systematic analyses were conducted on the stress evolution of the bifurcation pipe and the variation characteristics of the surrounding rock load-bearing ratio under different geometric configurations. The results indicate that: (1) With an increase in the expansion ratio, the average surrounding rock load-bearing ratio increases gradually but with a small growth rate; simultaneously, the stress at point LB (central section of the rib plate) increases significantly, and the shell stress fluctuates more notably under the open-pipe condition. (2) As the rib width ratio increases, the average surrounding rock load-bearing ratio remains essentially stable, the stress at characteristic points of the pipe shell changes gently, and the stress at point LB decreases significantly—specifically, when the rib width ratio is less than 0.35, the stress reduction rate at point LB is faster. (3) With an increase in the bifurcation angle, the average surrounding rock load-bearing ratio decreases (with a gradually diminishing decrement), the stress at point LB drops significantly, while the stress at most characteristic points of the pipe shell shows an upward trend.

       

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