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首页> 外文期刊>International Journal of Pressure Vessels and Piping >A numerical procedure to establish a safe working pressure during excavation of a pipeline in a rock ditch
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A numerical procedure to establish a safe working pressure during excavation of a pipeline in a rock ditch

机译:在岩石沟渠开挖过程中建立安全工作压力的数值程序

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The purpose of this work is to describe a numerical procedure that was conducted to examine the effect of internal pressure on the possibility of puncturing and rupturing a high-pressure gas pipeline due to the impact of a falling rock. The mass and the height of the falling object were fixed. The analyses were performed in two parts: first by comparing an initial potential energy of the indenter with the energy needed to dent and possibly puncture the pipeline, then by determining if the resulting puncture would result in unstable crack extension leading to pipeline rupture. Finite element analysis was used to examine various shapes of the indenting surface to assess the effect of contact geometry on the puncture resistance. For cases where puncture is predicted, the dimensions of the hole are compared to the critical pressure to cause rupture, using industry standard methodology. The overall procedure can thus be utilized to determine the critical pressure to avoid a rupture due to a falling rock. By further application of an appropriate safety factor, the safe working pressure for a pipeline excavation can be established.
机译:这项工作的目的是描述一种数值程序,该程序用于检查内部压力对由于下落的岩石的冲击而刺穿和破裂高压气体管道的可能性的影响。下落物体的质量和高度是固定的。分析分为两个部分:首先将压头的初始势能与压痕和可能刺穿管道所需的能量进行比较,然后通过确定所产生的刺破是否会导致不稳定的裂纹扩展导致管道破裂而进行分析。有限元分析用于检查压痕表面的各种形状,以评估接触几何形状对抗穿刺性的影响。对于预计会发生穿刺的情况,可使用行业标准方法将孔的尺寸与造成破裂的临界压力进行比较。因此,可以利用整个过程来确定临界压力,以避免由于落石而导致的破裂。通过进一步应用适当的安全系数,可以确定管道开挖的安全工作压力。

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