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Buckling of Thin-Walled High Density Polyethylene Liners Encased in Rigid Pipes under External Pressure and Thermal Effects

机译:外部压力和热作用下硬管中包裹的薄壁高密度聚乙烯衬里的屈曲

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The thin-walled close-fitting high-density polyethylene (HDP) liners are usually used to rehabilitate the damaged sewer pipes in the trenchless technology. The liner is installed on the inner surface of the pipe, resulting in a small curing shrinkage gap (separation) between the liner and pipe. When the pipe-liner system is surrounded by saturated soil under groundwater level, the water flows into the permeable pipe and yield hydrostatic pressure at the outer surface of the liner. In addition, a temperature variational field may generate on the pipe-liner system when it transmits the hot crude oil. An upward thermal displacement may occur on the crown position of the liner due to the expansion of the liner material. Furthermore, the hoop compressive stresses generate on the liner wall due to the confinement of the outer pipe. This paper focuses on analyzing the buckling behavior of the thin-walled HDP liners under external pressure and variational thermal field simultaneously. The closed-form analytical expressions are developed to determine the critical buckling pressure. This analytical solution is verified successfully by developing a finite element model (FEM). The numerical buckling pressure for the confined liner agrees well with closed-form expressions. The thermal field shows a substantial effect on the buckling pressure. Finally, the effects of temperature field and the gap on the buckling pressure are discussed.
机译:薄壁紧密贴合高密度聚乙烯(HDP)衬里通常用于修复非开挖技术中受损的下水道。衬管安装在管道的内表面上,导致衬管与管道之间的固化收缩间隙(分离)较小。当管道衬垫系统被地下水位以下的饱和土壤包围时,水流入可渗透管道并在衬垫的外表面产生静水压力。另外,当输送热原油时,在管道衬里系统上可能会产生温度变化场。由于衬里材料的膨胀,可能在衬里的胎冠位置上发生向上的热位移。此外,由于外管的限制,在内衬壁上产生环向压应力。本文着重分析薄壁HDP衬板在外部压力和变化热场的作用下的屈曲行为。开发了闭合形式的分析表达式以确定临界屈曲压力。通过开发有限元模型(FEM),成功地验证了此分析解决方案。密闭衬砌的数值屈曲压力与闭合形式很吻合。温度场显示了对屈曲压力的重大影响。最后,讨论了温度场和间隙对屈曲压力的影响。

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