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A REVIEW OF OPTIMISING THE DESIGN OF A NEW COKE DRUM SKIRT

机译:新型焦炭鼓裙的优化设计综述

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Coke drums are subjected to severe thermal cycling with the skirt to shell connection weld being vulnerable to fatigue cracking. It is essential this connection is well designed to ensure a long life before repairs are inevitably required. Much has been written on coke drum skirt design with the aim of reducing the thermal stresses and strains encountered at the skirt connection weld, some designs have removed the weld completely allowing the drum to sit in an 'egg-in-cup' arrangement. This paper includes a short literature review discussing Coke drum skirt designs and explains skirt behaviour during the drum cycle that results in eventual skirt cracking. A case study is reviewed in detail for a new pair of coke drums, where the predicted fatigue life of the chosen welded connection is assessed using axisymmetric, quarter symmetry and half symmetry finite element analysis supported by thermocouple data. The optimised design focuses on a conventional tangential design where the effects of the essential variables such as skirt thickness, skirt connection location, skirt-to head-gap and slot design (length, location & spacing) have been modelled and optimised to obtain a skirt design that produces the longest fatigue life for the intended duty cycle. Coke drum skirts must be installed onto the shell to exacting tolerances during manufacture to ensure concentricity and minimal gap between the skirt and shell. A brief overview of how this is achieved will be presented.
机译:焦炭鼓承受剧烈的热循环,裙部与壳体之间的连接焊缝容易疲劳破裂。至关重要的是,这种连接必须经过精心设计,以确保在不可避免地需要维修之前具有较长的使用寿命。关于减少焦炭鼓裙部设计的许多文章旨在减少裙部连接焊缝处遇到的热应力和应变,有些设计已完全去除了焊缝,使鼓鼓处于“蛋杯形”的位置。本文包括一篇简短的文献综述,讨论可乐鼓裙的设计,并解释了鼓循环期间裙的行为,最终导致裙裂。对新的一对焦炭鼓进行了详细的案例研究,其中使用热电偶数据支持的轴对称,四分之一对称和半对称有限元分析来评估所选焊接连接的预测疲劳寿命。优化的设计着重于传统的切向设计,其中已模拟并优化了诸如裙边厚度,裙边连接位置,裙边到头部间隙和裙边设计(长度,位置和间距)等基本变量的影响,以获得裙边设计可在预期的占空比下产生最长的疲劳寿命。焦炭鼓裙必须在制造过程中安装到壳体上,以达到严格的公差,以确保裙部和壳体之间的同心度和最小间隙。将简要介绍如何实现这一目标。

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