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Fatigue evaluation of API 12D tanks with a semicircular-topped rectangular cleanout and stepped shell design

机译:API 12D坦克的疲劳评价用半圆形矩形清洁和阶梯式壳设计

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Ten tank designs with nominal capacities ranging from 500 bbl (793 m(3)) to 10,000 bbl (1590 m(3)) are provided by the American Petroleum Institute Specification 12D (API 12D) to accommodate the needed temporary storage of extracted product in the upstream segment of the oil and gas industry. These tanks are designed to withstand the operational conditions of the storage process and the operating pressure ranges, and are field-welded and mass-produced to accommodate the storage needs of the upstream segment of the facility. The fatigue evaluation, based on ASME BPVC Section VIII, Division 2 is performed in this study for these ten tank designs with a new cleanout detail that is an extended-neck rectangular cleanout with a semicircular top and is surrounded by a reinforcement pad. The stresses found in the junctions connecting the cleanout neck to the bottom plate, the shell to the bottom plate, and the roof to the top angle that is attached to the shell are investigated under the influence of internal pressure, vacuum pressure, and hydrostatic pressure. The tanks were idealized as axisymmetric models using a finite element analysis approach to study the stresses in the roof-to-shell and shell-to-bottom junctions, while a three-dimensional, solid-element, sub-model driven by a three-dimensional shell model of the entire tank was used to idealize the cleanout junction. The stress classification in the junctions of interest were obtained to evaluate the fatigue life by simulating the modeled tanks and loading pattern using elastic stress analyses. The number of permissible design cycles for each of the ten API 12D tanks is presented and discussed in this work.
机译:由500 BBL(793米(3))到10,000bbl(1590米(3))提供的10个坦克设计由美国石油研究所规范12D(API 12D)提供,以适应所提取产品的临时储存石油和天然气工业上游段。这些罐设计为承受存储过程的操作条件和操作压力范围,并且是现场焊接和批量生产,以适应设施上游段的存储需求。基于ASME BPVC部分VIII的疲劳评估在本研究中进行了这款10个坦克设计,具有新的清洁细节,该细节是具有半圆形顶部的延伸颈部矩形清洁,并被加强垫包围。在将清洁颈部连接到底板的连接中发现的应力,在内部压力,真空压力和静压压力的影响下,研究了将底板的壳体连接到底板上,以及附着在壳体上的顶角。 。使用有限元分析方法将罐作为轴对称模型,以研究屋顶到壳和底部结的应力,而三维固体元素,由三维驱动的子模型整个罐的尺寸壳模型用于理想清理结。通过使用弹性应力分析模拟模拟的罐和装载模式,获得了感兴趣的结的应力分类以评估疲劳寿命。在这项工作中呈现和讨论了10个API 12D罐中的每一个的允许设计周期的数量。

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