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爆炸冲击下的薄壁圆柱壳储存罐:有限元分析

Thin-Walled Cylindrical Shell Storage Tank under Blast Impacts: Finite Element Analysis.

作者信息

Al-Yacouby Ahmad Mahamad, Hao Lo Jia, Liew M S, Ratnayake R M Chandima, Samarakoon Samindi M K

机构信息

Civil and Environmental Engineering Department, Universiti Teknologi PETRONAS, Seri Iskandar 32610, Perak, Malaysia.

Department of Mechanical and Structural Engineering and Materials Science, University of Stavanger, 4021 Stavanger, Norway.

出版信息

Materials (Basel). 2021 Nov 22;14(22):7100. doi: 10.3390/ma14227100.

Abstract

Thin-walled cylindrical shell storage tanks are pressure vessels in which the walls of the vessel have a thickness that is much smaller than the overall size of the vessel. These types of structures have global applications in various industries, including oil refineries and petrochemical plants. However, these storage tanks are vulnerable to fire and explosions. Therefore, a parametric study using numerical simulation was carried out, considering the internal liquid level, wall thickness, material yield strength, constraint conditions, and blast intensity, with a diameter of 100 m and height of 22.5 m under different blast loads using the finite element analysis method. The thickness of the tank wall is varied as 10 mm, 20 mm, 30 mm, and 40 mm, while the fill level of internal fluid is varied as 25, 50, 75, and 100%. The blast simulation was conducted using LS-DYNA software. The numerical results are then compared with analytical results. The effects of blast intensity, standoff distance, wall thickness, and fill level of internal fluid on the structural behaviour of the storage tank were investigated and discussed.

摘要

薄壁圆柱形储油罐是一种压力容器,其容器壁的厚度远小于容器的整体尺寸。这类结构在包括炼油厂和石化厂在内的各种行业中有着广泛应用。然而,这些储油罐容易遭受火灾和爆炸。因此,采用有限元分析方法,以直径100米、高22.5米的储油罐为研究对象,考虑内部液位、壁厚、材料屈服强度、约束条件和爆炸强度等因素,在不同爆炸载荷下进行了参数研究。罐壁厚度分别为10毫米、20毫米、30毫米和40毫米,内部流体的填充水平分别为25%、50%、75%和100%。使用LS-DYNA软件进行爆炸模拟。然后将数值结果与分析结果进行比较。研究并讨论了爆炸强度、间距、壁厚和内部流体填充水平对储油罐结构性能的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b52/8624470/b3bf624c6a37/materials-14-07100-g001a.jpg

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