共查询到16条相似文献,搜索用时 218 毫秒
1.
2.
3.
研究在任意轴对称边界条件下和任意轴对称分布载荷作用下体积保持常数的圆柱壳的两类优化设计问题:极小化圆柱壳的最大挠度和极小化圆柱壳的柔度.采用阶梯折算法,用传递矩阵导出变厚度圆柱壳平衡问题的初参数解的显式表达式,将优化设计转化为极小化目标函数的非线性规划问题,并采用广义简约梯度法进行优化计算.对典型问题的计算表明,该方法能解决受应力、几何等约束的离散变量结构优化设计问题,计算过程具有编制程序方便、收敛快和精度高的优越性,是一种理想的优化设计方法. 相似文献
4.
基于分枝定界法的环肋圆柱壳优化研究 总被引:1,自引:0,他引:1
基于分枝定界方法,研究了环肋圆柱壳静水压力作用下,考虑强度和稳定性约束时重量最轻的混合变量优化设计问题,讨论了强度约束和稳定性约束以及材料、几何参数对优化结果的影响.该方法能够有效求解环肋圆柱壳的混合优化问题,计算量小,精度高;环肋圆柱壳经优化后,壳板的重量比例大约是70%,肋骨重量占30%.并且随壳体的长径比(L/R)变化不大.环肋圆柱壳的优化中,肋骨的应力约束是主要约束,肋骨应力已经非常接近许用应力标准,其他应力、局部和总体失稳压力还有一定的储备. 相似文献
5.
6.
7.
基于径向形函数可任意变阶的映射声无限元法,对加筋双层圆柱壳的振动声辐射特性进行分析.取无限长圆柱壳体为研究对象,基于映射声无限元法,通过数值计算法对其辐射声场进行研究分析;并将其数值结果与解析解进行对比分析,结果显示二者吻合较好,验证了本文方法的可行性,同时发现此方法具有计算精度好、效率高等优点.在此研究基础上,基于映射变阶声无限元法,对加筋双层圆柱壳的内壳振动特性和远场声辐射特性进行分析,分别讨论内外壳厚度、型材尺寸和托板厚度对加筋双层圆柱壳内壳体表面振动均方加速度级及远场辐射声压级的影响,其分析结果表明,内壳厚度结构参数对其内表面振动均方加速度级及远场辐射声压级的影响最明显. 相似文献
8.
9.
10.
11.
针对水下非接触爆炸问题过程复杂、计算速度慢的问题,本文以一环肋圆柱壳为例,基于以内嵌的水下爆炸载荷计算方法和声-结构耦合方法为关键技术的水下爆炸分析法(AUA),对其水下爆炸冲击下的响应进行了分析。结果发现,壳板厚度对圆柱壳的水下非接触爆炸响应有较为显著的影响,随着壳板厚度的增加,环肋圆柱壳最大位移减小的幅度逐渐变小。在爆炸初期爆距对环肋圆柱壳冲击响应的影响不大,随时间的推移这种影响逐渐增大,环肋圆柱壳各测点变形随爆距的增大线性减小;当肋骨间距大于0.25倍环肋圆柱壳长时,环肋圆柱壳最大变形量可减小90%;继续减小肋骨间距,环肋圆柱壳最大变形减少量并不明显,说明肋骨对其附近测点和中间的板壳起到了显著的加强作用,肋骨间距为0.25倍环肋圆柱壳长时为最经济的肋骨布置方式。 相似文献
12.
13.
流场中任意厚度阻尼复合圆柱壳的声辐射(英文) 总被引:2,自引:1,他引:1
The insertion loss of acoustic radiation of damped cylindrical shell described by 3-D elasticity Navier equations under radial harmonic applied load in fluid is presented. The classical integral transform technique, potential theory and Lamè resolution are used to derive the solutions of Navier equations. The higher precision inversion computation is introduced to solve the linear equations. Comparing with acoustic radiation of one-layer cylindrical shell, the influence of thickness, mass density, dilatational wave loss factor and Young's modulus of damping material and circumferential mode number of the cylindrical shell on the insertion loss is concluded. The theoretical model in the paper can be used to deal with the arbitrary thickness and any frequency of the coated layer in dynamic problem. The conclusions may be of theoretical reference to the application of damping material to noise and vibration control of submarines and underwater pipes. 相似文献
14.
15.
A general method was proposed to study the sound and vibration of a finite cylindrical shell with elastic theory.This method was developed through comprehensive analysis of the uncoupled Helmholtz equation obtained by the decomposition of elastic equations and the structure of the solution of a finite cylindrical shell analyzed by thin shell theory.The proposed method is theoretically suitable for arbitrary thickness of the shell and any frequency.Also,the results obtained through the method can be used to determine the range of application of the thin shell theory.Furthermore,the proposed method can deal with the problems limited by the thin shell theory.Additionally,the method can be suitable for several types of complex cylindrical shell such as the ring-stiffened cylindrical shell,damped cylindrical shell,and double cylindrical shell. 相似文献