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Optimization of Casing Wall Structure of Electrostatic Precipitator - A Case Study

机译:静电除尘器套管壁结构优化 - 以案例研究

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The conventional structural design of wallboard of electrostatic precipitator casing uses the wall structure of stiffened flat sheet which consumes a great amount of steel. Consequently, a new structural idea was explored to optimize the conventional design which applied profiled steel sheet and located wall beam and wall column. The codes were written which designed and analyzed the wall structure of casing. On the basis of a practical project, as the design parameters were varying, the codes were used to automatically compute the strength, stability, stiffness and steel consumption of profiled steel sheet, wall beam and wall column of the corresponding design case. Then, the design with the minimum steel consumption was selected as the optimum one among all the cases which could satisfy the design requirements. The characteristics of the optimum section shape were generalized. The influence of structure layout on the minimum total steel consumption of casing wall structure was investigated. The total steel consumption of casing wall structure is comparatively small when wall column and wall beam divide the whole wallboard into several smaller blocks whose aspect ratio is about 1.6-2.9. Compared with the original wall structure of stiffened steel sheet, the optimized wall structure composed of profiled sheet, wall column and wall beam can save steel significantly which can be applied widely in large-scale electrostatic precipitator casing structures.
机译:静电除尘器外壳墙板的传统结构设计使用加强平板的壁结构,消耗大量的钢。因此,探索了一种新的结构思路,以优化施加钢板和位于壁梁和壁柱的传统设计。编写的代码被写入,设计和分析了壳体的壁结构。在一个实际项目的基础上,由于设计参数变化,代码用于自动计算相应设计壳体的成型钢板,壁梁和壁柱的强度,稳定性,刚度和钢消耗。然后,选择具有最小钢消耗的设计作为可以满足设计要求的所有情况中的最佳选择。最佳部分形状的特性是概括的。研究了结构布局对壳壁结构最小总钢消耗的影响。当壁柱和壁束将整个墙板分成几个较小的块时,套管壁结构的总钢消耗比较小,横向比为约1.6-2.9。与加强钢板的原始墙壁结构相比,由成型板,壁柱和壁梁组成的优化墙体结构可以显着节省钢,可在大型静电除尘器壳体结构中广泛应用。

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