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埋地钢制油罐安装力学特性分析
引用本文:宋仕强,张世富,张起欣.埋地钢制油罐安装力学特性分析[J].石油化工设备,2013(6):32-37.
作者姓名:宋仕强  张世富  张起欣
作者单位:[1]后勤工程学院研究生三队,重庆401311 [2]后勤工程学院国家救灾应急装备工程技术研究中心,重庆401311 [3]后勤工程学院军事供油工程系,重庆401311
摘    要:针对埋地油罐的安装特点,对埋地油罐的罐外覆土压力进行了分析。应用大型通用有限元分析软件ANSYS建立了30m^3埋地钢制油罐的三维有限元模型,并进行求解,得出埋地油罐最大等效应力发生在鞍座尖角处罐体外壁面上。分析了砼鞍座的支撑位置及结构尺寸对油罐强度的影响,结果表明,当支撑位置A≤400mm时,油罐的最大等效应力发生在鞍座外侧边缘最低点的罐体内壁面上;当A〉400mm时,油罐的最大等效应力发生在鞍座尖角处罐体外壁面上。砼鞍座宽度及包角对油罐最大等效应力的影响相互独立,安装埋地油罐时砼鞍座的支撑位置应尽量靠近封头连接处。

关 键 词:埋地油罐  力学特性  有限元分析

Installation Mechanics Performance Analysis for Buried Oil Tank
SONG Shi-qiang,ZHANG Shi-fu,ZHANG Qi-xin.Installation Mechanics Performance Analysis for Buried Oil Tank[J].Petro-Chemical Equipment,2013(6):32-37.
Authors:SONG Shi-qiang  ZHANG Shi-fu  ZHANG Qi-xin
Affiliation:(Logistics Engineering University a. Department of Postgraduate Management; National Engineering Research Center for Disaster and Emergency Rescue Equipment; c. Department of Petroleum Supply Engineering, Chongqing 401311, China)
Abstract:Aimed at the buried oil tank installation characteristics, the mulching soil pressure of buried oil tank is analyzed. The finite element model of 30 ma buried steel oil tank is established by the large general-purpose finite element analysis software ANASYS and the result is obtained. The solution is that the maximum stress of tank appears on the tank outer-wall attached to the saddle closed angle. Analyzing the influence of concrete saddle parameter and support position to the intensity of tank, the results has show that when support position A≤400 mm, the maximum stress of tank appears on the tank inner-wall attached to the lowest point of the saddle outboard edge, when support position A〉400 mm, the maximum stress of tank appears on the tank outerwall attached to the saddle closed angle; the influence of the width and contact angle of concrete saddle to the maximum stress of tank is mutual independence; when the buried oil tank installa- tion, the concrete saddle should be located at the position near the head.
Keywords:buried oil tank  mechanics performance  finite element analysis
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