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Stiffener Layout Optimization of Inlet Structure for Electrostatic Precipitator by Improved Adaptive Growth Method

机译:改进的自适应增长法优化电除尘器入口结构的加劲肋布局。

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摘要

The inlet structure is the main part of an electrostatic precipitator, so its mechanical properties, including the static strength, stiffness, and vibration characteristics, play an important role in the structural safety. In order to achieve good mechanical performance and lightweight of the inlet structure, an optimal design method, which is based on growth mechanism of the branching systems in nature and optimality criteria, named the improved adaptive growth method, is suggested. The method is applied to optimize the stiffener layout of the inlet structure, and the multiobjective optimization mathematical model which consists of the minimum compliance and the maximum natural frequency is considered. The optimality criteria method is applied to solve the design problem. The design result shows that the suggested method is effective, compared with the empirical design of the inlet structure, the weight of the optimal structure is reduced by 3.0%, while the global stiffness and the first natural frequency are increased by 18.83% and 4.66%, respectively.
机译:入口结构是静电除尘器的主要部分,因此其机械性能(包括静态强度,刚度和振动特性)在结构安全中起着重要作用。为了获得良好的机械性能和入口结构的轻量化,提出了一种基于分支系统的生长机理的优化设计方法,该方法基于自然界和最优标准,称为改进的自适应生长方法。该方法用于优化进气道结构的加劲肋布置,并考虑了由最小顺应性和最大固有频率组成的多目标优化数学模型。采用最优准则方法解决设计问题。设计结果表明,所建议的方法是有效的,与进口结构的经验设计相比,最优结构的重量减少了3.0%,而整体刚度和第一固有频率分别增加了18.83%和4.66% , 分别。

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