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随机风荷载下单层柱面网壳的整体疲劳分析
引用本文:林钧敏,李海阳.随机风荷载下单层柱面网壳的整体疲劳分析[J].宁波大学学报(理工版),2006,19(4):521-524.
作者姓名:林钧敏  李海阳
作者单位:国防科学技术大学,航天与材料工程学院,湖南,长沙,410073;宁波市宏基置业有限公司,浙江,宁波,315000;国防科学技术大学,航天与材料工程学院,湖南,长沙,410073
摘    要:针对随机风荷载下单层柱面网壳的网状结构,用AR法模拟Kaimal谱多点相关的脉动风风速时程,确定结构所承受的荷载谱,通过有限元时程分析和雨流计数法得到杆件的应力循环历史,采用疲劳设计方法中的总寿命法计算杆件的疲劳损伤度,分析结构在不同矢跨比、不同平均风速下结构的抗疲劳性能.研究表明:结构中出现疲劳的杆件数随矢跨比的减小而逐渐增加,结构中杆件最大疲劳损伤度JD随着矢跨比的减小而逐渐增大.网壳的疲劳薄弱区域主要与结构的振型有关;矢跨比较大时,结构中环向杆件易出现疲劳,随着矢跨比的减小,结构径向肋两侧的斜杆易出现疲劳。

关 键 词:单层柱面网壳  随机风荷载  疲劳  薄弱区域
文章编号:1001-5132(2006)04-0521-04
收稿时间:2006-11-13
修稿时间:2006年11月13

Integral Fatigue Analysis of Single-layer Latticed Cylindrical Shells under Stochastic Wind Loads
LIN Jun-min,LI Hai-yang.Integral Fatigue Analysis of Single-layer Latticed Cylindrical Shells under Stochastic Wind Loads[J].Journal of Ningbo University(Natural Science and Engineering Edition),2006,19(4):521-524.
Authors:LIN Jun-min  LI Hai-yang
Institution:1.College of Aerospace Engineering, National University of Defence Technology, Changsha 410073, China; 2. Ningbo Hongji Real Estate Co. Ltd., Ningbo 315000, China
Abstract:The paper touches upon the problem of integral fatigue of single-layer latticed cylindrical shells under stochastic wind loads.By simulating fluctuating wind speed in time history according to Kaimal power spectrum with AR methods,load spectrums were obtained.After time history analyses of FEM and statistics of stress cycles history by rainflow counting algorithms,the total life method was adopted to obtain the fatigue damage of members.Fatigue performance of the single-1ayer latticed cylindrical shells were analyzed under different rise-span ratios and average wind velocities.Research shows that the number of fatigue members increased gradually with the decrease of the rise-span ratio while the maximum fatigue damage of members increased with the decrease of the rise-span ratio.Fatigue regions of single-1ayer spherical reticulated shells were related to the structural vibration mode: when the rise-span ratio was relatively high,circular members in the structure came about fatigue damage easily and when the rise-span ratio became small,the members of both sides of radial ribs came about fatigue damage easily.
Keywords:single-1 ayer latticed cylindrical shells  stochastic wind loads  fatigue  weak region
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