首页> 外文期刊>Strength of Materials >APPLICATION OF THE PROJECTION-ITERATIVE SCHEME OF THE METHOD OF LOCAL VARIATIONS TO SOLVING STABILITY PROBLEMS FOR THIN-WALLED SHELL STRUCTURES UNDER LOCALIZED ACTIONS
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APPLICATION OF THE PROJECTION-ITERATIVE SCHEME OF THE METHOD OF LOCAL VARIATIONS TO SOLVING STABILITY PROBLEMS FOR THIN-WALLED SHELL STRUCTURES UNDER LOCALIZED ACTIONS

机译:应用局部变化方法的应用迭代方案对局部动作下薄壁壳结构稳定性问题的应用

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The tasks of the stability of reinforced spherical shells that are part of the extended in homogeneous structures are investigated under localized actions based on the developed new projection-iterative version of the method of local variations. Stability under local loading implies the performance of thin-walled shell structures in rocket and,space equipment, antenna and waveguide technology, as well as power engineering. Under localized actions, there is a significant concentration of stresses and strains. The methods for solving relevant tasks are rather complex, multiple-mesh variational-difference schemes are within the area of focus. For the tasks of stress-strain state and stability under considerably inhomogeneous stress states, the local variation method is effective, but it requires more computation time as compared with the Ritz-type finite difference and variation methods. Noteworthy is that this leads to the need to develop more adequate schemes for its implementation based on the concept of projection-iterative methods. This scheme of the method of local variations is analyzed, its convergence is investigated, and the practical efficiency associated with a significant decrease in computation time for numerical implementation is shown. The tasks of the stability, of complex shell structures with spherical shells reinforced by support rings under the exposure of local loads are considered The experimental investigation data are given. The calculated data of the critical forces and the configuration of the waveforms are corroborated experimentally.
机译:基于局部变化方法的开发的新投影迭代版本,研究了作为均匀结构延伸的均匀结构的一部分的增强球形壳的稳定性的任务。本地装载下的稳定意味着薄壁壳结构在火箭和空间设备,天线和波导技术中的性能,以及电力工程。在局部作用下,存在显着浓度的应力和菌株。解决相关任务的方法是相当复杂的,多网格变分差方案位于焦点区域内。对于应力 - 应变状态和稳定性在相当不均匀的应力状态下的稳定性,局部变化方法是有效的,但与RITZ型有限差和变化方法相比,它需要更多的计算时间。值得注意的是,这导致基于投影迭代方法的概念来实现其实现的更具足够的计划。分析了该局部变型方法的方法,示出了其收敛性,并且示出了与数值实现的计算时间显着降低相关的实际效率。在局部载荷暴露下,通过支撑环增强的稳定性的稳定性的任务被认为是给出了实验研究数据。计算出的临界力和波形的配置的数据进行实验证实。

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