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基于流固耦合作用的罐式集装箱强度分析 被引量:8

Strength Analysis of Tank Truck Based on Fluid-structure Interaction
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摘要 应用FLUENT软件对罐车在刹车过程中罐内液体的晃动情况进行模拟,并基于最大水击压力工况,运用有限元分析软件ANSYS对罐车进行应力分析。研究表明:按实际刹车制动过程液体晃动水击内壁压力计算的液化气体罐式集装箱的罐体最大应力要比按JBT 4781—2005标准计算的最大应力值增加38.6%。而且按照JBT4781—2005液化气体罐式集装箱规定计算得出的罐体各部分应力均低于许用值;但是在实际液体晃动产生的水击压力作用下,在支撑圈与封头连接处的应力大于许用值,不能满足强度要求。 The process of liquid sloshing in the braking process of tank truck was studied with FLUENT, and the stress of tanker was simulated with ANSYS based on the condition of the maximum water hammer pressure. The results showed that the maximum stress calculated by the hammer pressure in the actual braking process of tank truck could be increased by 38.6% compared with the maximum stress of liquefied gas tank container calculated by JBT 4781-2005 standards. Moreover, the stress of tanker was lower than allowable stress according to JBT 4781- 2005 standards. But the stress of the junction of support ring and head was greater than allowable stress calculated by the hammer pressure during the actual braking process of tank truck. It could not meet the strength requirement.
出处 《南昌大学学报(工科版)》 CAS 2012年第2期111-114,共4页 Journal of Nanchang University(Engineering & Technology)
基金 国家自然科学基金资助项目(20274016)
关键词 液化气体罐式集装箱 流体体积法 液体晃动 水击压力 应力分析 liquefied gas tank container VOF liquid sloshing water hammer pressure stress analysis
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  • 1薛明德,孙合堂,田丽珊.球壳开孔接管的分析设计方法及其试验验证[J].压力容器,1989,6(1):34-42. 被引量:14
  • 2刘金纯.压力容器分析设计的结构优化方法[J].当代化工,2006,35(6):418-422. 被引量:7
  • 3薛明德 等.大开孔球壳径向平齐接管的补强方法[J].压力容器,1985,(5).
  • 4张映 等.大开孔球壳径向内伸接管的补强设计方法[J].压力容器,1986,(5).
  • 5Hauashi M, Hatanaka K, Lagrange K M. Finite element method for free surface navier-Stokes flow using fractional step methods [J]. International Journal Numerical Methods Fluids, 1991, 13 : 805 - 840.
  • 6Armenio V. On the analysis of sloshing of water in rectangular containers: numerical study an experiment validation [ J ]. Ocean Engineering, 1996, 23(8) : 705 -737.
  • 7Yue Baozeng, Wang Zhaolin, Li Junfeng. Liquid sloshing in cylindrical tank with elastic spacer [J]. Communications in Nonlinear Science & Numerical Simulations, 1996, 1 (2) : 66 - 69.
  • 8国家技术监督局.GB150.1998.钢制压力容器[R].北京:中国标准出版社.1998.
  • 9全国压力容器标准化技术委员会.JB4732.1995.钢制压力容器--分析设计标准[R].北京:中国标准出版社,1995.
  • 10MIYATA S,KUDO K,KATO T,et al.Mass simulations based design approach and its environment:multi-objective optimization of diesel engine with distributed genetic algorithm using iSIGHT,MOGADES and HIDECS parallel computational fluid dynamics[EB/OL].http://www.is.doshisha.ac.jp/academic/papers/pdf/02/20020528miyata.pdf.

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