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局部双层去顶网壳参数化设计与力学分析
引用本文:曹俊超,黄丽丽,鹿晓阳,李大勇,种帅.局部双层去顶网壳参数化设计与力学分析[J].科学技术与工程,2021,21(2):664-670.
作者姓名:曹俊超  黄丽丽  鹿晓阳  李大勇  种帅
作者单位:山东建筑大学工程力学研究所,济南250101;山东建筑大学材料学院,济南250101;山东建筑大学工程力学研究所,济南250101;山东建筑大学教务处,济南250101;山东建筑大学工程力学研究所,济南250101
基金项目:山东省研究生创新计划项目(SDYY08038)和山东建筑大学研究生优质课程(YZKC201605)
摘    要:为研究局部双层去顶球面网壳力学性能,进而选出适用于大跨度露天结构的网壳类型,应用ANSYS软件的程序设计语句APDL(ANSYS parametric design language),研制了6类局部双层去顶网壳的参数化模型设计程序,并对6类网壳的静力性能及影响要素做出对比分析.研究结果表明:该模型设计程序简单实用,为结构在不同几何参数下的力学性能分析带来了极大便利;结构几何参数对其力学性能影响较复杂,且网壳最顶圈为结构薄弱部位;联方型在6类网壳中受力性能相对最好,可在大跨度露天结构中优先考虑.

关 键 词:去顶球面网壳  局部加强结构  参数化设计  力学性能对比分析
收稿时间:2020/4/14 0:00:00
修稿时间:2020/10/13 0:00:00

Parametric Design and Static Performance of Partially Double-layer Semi-open Reticulated Shell
Cao Junchao,Huang Lili,Lu Xiaoyang,Li Dayong,Chong Shuai.Parametric Design and Static Performance of Partially Double-layer Semi-open Reticulated Shell[J].Science Technology and Engineering,2021,21(2):664-670.
Authors:Cao Junchao  Huang Lili  Lu Xiaoyang  Li Dayong  Chong Shuai
Institution:Shandong Jianzhu University
Abstract:By using ANSYS Parametric Design Language (APDL), this paper compiled parametric design macro program for six types of partially double-layer semi-open spherical reticulated shell structure. Parametric design of the six types of reticulated shell structure was realized with given principal geometric parameters of the structure. The stress performance of the six types of reticulated shell structure was compared and analyzed. The results show that the parametric design macro program is simple, practical and provides great convenience for the selection design of the reticulated shell and the stress analysis under different geometric parameters. By analyzing the stress result, the structural forms with good stress performance in six kinds of reticulated shells and the laws of the influence of geometric parameters on the structural stress performance are obtained.
Keywords:partial double-layer reticulated shell      semi-open spherical reticulated shell      parametric design      comparative analysis of the stress performance
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