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OPTIMIZATION CALCULATION METHOD OF WALL THICKNESS FOR LARGE OIL STORAGE TANK MADE OF HIGH STRENGTH STEEL

机译:高强度钢制成的大型储油罐壁厚优化计算方法

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Optimization calculation method determining wall thickness for large oil storage tank made of high strength steel is investigated in this paper. Taking three oil storage tanks with different volumes of 10×10~4 m~3, 15×10~4 m~3 and 20×10~4 m~3 for examples, the wall thickness calculation methods of API 650, GB 50341, JIS B 8501 and BS EN 14015 have been analyzed and compared. Results show that as the volume of oil storage tank increases, some wall thickness calculation results of the standards have been larger than the allowable value, leading to the unreasonable distribution of the wall circumferential stress. The wall thickness calculation result applying the method of API 650 is more reasonable than other standards. While for the tanks made of high strength steel, like 12MnNiVR (GB 50341), the yield ratio of the steel has reached 0.803, which is larger than the upper limit value of API 650. In order to make up the deficiency, an optimization method based on API 650 is presented, which considers the effects of yield strength, tensile strength and yield ratio on the determination of allowable stress. Taking the 20×10~4 m~3 oil storage tank and selecting a proper welded joint efficiency, the wall thickness is calculated by the presented optimization method. The wall thickness calculation result is more reasonable and the circumferential stress distribution is more homogeneous when the safety factor of tensile strength is taken to be 2.4. Results show that the optimization method is applicable to the thickness calculation of oil storage tanks made of high strength steel.
机译:本文研究了优化计算方法确定高强度钢制成的大型储油罐的壁厚。采用三个储油罐,不同的数量为10×10〜4 m〜3,15×10〜4 m〜3和20×10〜4 m〜3例,壁厚计算方法API 650,GB 50341,已经分析并比较了JIS B 8501和BS EN 14015。结果表明,随着储油罐的数量增加,标准的一些壁厚计算结果大于允许值,导致壁周向应力的不合理分布。应用API 650的方法的壁厚计算结果比其他标准更合理。虽然对于由高强度钢制成的罐,如12mnnivr(GB 50341),但钢的屈服比达到0.803,比API 650的上限值大。为了弥补缺陷,优化方法提出基于API 650,其考虑了屈服强度,拉伸强度和产率比对允​​许应力的测定的影响。采用20×10〜4 m〜3储油罐并选择适当的焊接接头效率,通过所示的优化方法计算壁厚。壁厚计算结果更合理,并且当抗拉强度的安全系数为2.4时,周向应力分布更均匀。结果表明,优化方法适用于高强度钢制成的储油罐的厚度计算。

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