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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Stress concentration analysis of butt welds with variable wall thickness of spanning pipelines caused by additional loads
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Stress concentration analysis of butt welds with variable wall thickness of spanning pipelines caused by additional loads

机译:额外负载引起的跨越管道可变壁厚的对接焊缝应力集中分析

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In the field of oil and natural gas gathering and transportation, the pipeline is likely to be span under the geological load. With the influence of gravity, internal pressure and other additional loads the stress concentration at the variable wall thickness weld on the spanning pipeline would further threaten the safe operation of pipelines. In this paper, finite element method is used to establish the numerical model of variable wall thickness butt weld of free spanning pipelines. The SCF(Stress Concentration Factor) is used to reflect the stress concentration degree of the weld with variable wall thickness under the affect of additional stress, and the stress distribution of variable wall thickness welds is studied. The influence of spanning pipe length, welding positions, internal pressure, thickness ratios and conical surface lengths on the SCF of the spanning pipe are obtained. The results illustrate that under the action of additional stress the existence of variable wall thickness weld has a great influence on the welding root at the bottom of the pipeline, which is not conducive to the stress of the spanning pipeline. The change of pipe spanning length has great influence on the SCF at the weld root at the bottom of the pipe. As the length of the spanning increases, the SCF growth rate at the root of the weld is greater. The position of variable wall thickness weld has a certain impact on the SCF of spanning pipeline. As the variable wall thickness weld is close to the mid-span position of pipeline, the stress concentration part of the weld gradually transfers from the top of the pipe to the bottom of the pipe. The change of pipeline internal pressure has little influence on SCF. The wall thickness ratio and the conical surface length have a great influence on the pipeline, which is the main influencing factor of the stress concentration of the spanning pipeline. Reducing the wall thickness ratio or increasing the conical surface length can effectively reduce the stress concentration of the variable wall thickness weld.
机译:在石油和天然气收集和运输领域,管道可能会在地质负荷下跨度。由于重力的影响,内部压力和其他附加载荷在跨越管道上可变壁厚焊缝处的应力浓度进一步威胁到管道的安全操作。本文采用有限元方法来建立自由跨越管道可变壁厚对接焊缝的数值模型。 SCF(应力集中因子)用于在额外应力的影响下反映具有可变壁厚的焊缝应力浓度程度,并且研究了可变壁厚焊缝的应力分布。获得跨越管长,焊接位置,内部压力,厚度比和锥形表面长度在跨越管的SCF上的影响。结果说明,在附加应力的作用下,可变壁厚焊缝的存在对管道底部的焊接根具有很大影响,这不利于跨越管道的应力。管道跨度长度的变化对管道底部的焊接根部的SCF产生很大影响。随着跨度的长度增加,焊缝根部的SCF生长速率更大。可变壁厚焊缝的位置对跨越管道的SCF具有一定影响。随着可变壁厚焊缝接近管道的中跨位置,焊接的应力集中部分逐渐从管道的顶部转移到管道的底部。管道内部压力的变化对SCF影响不大。壁厚比和锥形表面长度对管道具有很大影响,这是跨越管道应力浓度的主要影响因素。减小壁厚比或增加锥形表面长度可以有效地降低可变壁厚焊缝的应力浓度。

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