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Numerical simulation of the double pits stress concentration in a curved casing inner surface:

机译:弯曲套管内表面双坑应力集中的数值模拟:

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Sour or sweet oil fields development is common in recent years. Casing and tubing are usually subjected to pitting corrosion because of exposure to the strong corrosion species, such as CO2, H2S, and saline water. When the corrosion pits formed in the casing inner surface, localized stress concentration will occur and the casing strength will be degraded. Thus, it is essential to evaluate the degree of stress concentration factor accurately. This article performed a numerical simulation on double pits stress concentration factor in a curved inner surface using the finite element software ABAQUS. The results show that the stress concentration factor of double pits mainly depends on the ratio of two pits distance to the pit radius (L/R). It should not be only assessed by the absolute distance between the two pits. When the two pits are close and tangent, the maximum stress concentration factor will appear on the inner tangential edges. Stress concentration increased by double pits in a curved casing inner s...
机译:近年来,酸或甜油油田的开发很普遍。套管和油管通常会遭受点蚀,因为它们会暴露于强腐蚀物质,例如CO2,H2S和盐水中。当在壳体内表面上形成腐蚀坑时,会出现局部应力集中,并使壳体强度降低。因此,准确评估应力集中因子的程度至关重要。本文使用有限元软件ABAQUS对弯曲内表面的双坑应力集中系数进行了数值模拟。结果表明,双凹坑应力集中系数主要取决于两个凹坑距离与凹坑半径的比值(L / R)。它不仅应通过两个凹坑之间的绝对距离来评估。当两个凹坑接近且相切时,最大应力集中系数将出现在切向内侧。在弯曲的套管内壁上,双凹坑会增加应力集中。

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