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Load distribution influence on the mechanical state of reinforcement concrete structures of a port storage facility

机译:负荷分布对端口储存设施钢筋混凝土结构力学状态的影响

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The stress/strain state of reinforcement concrete walls and foundation plate of a storage facility in the seaport of Klaipeda (Lithuania, the EU) is investigated, considering the distribution of loads from stored bulk materials. At the first, a simple test problem has been calculated: reinforcement slab 21′35?m in plane on 24 columns, which are located by a regular step. During creating the combinations of all 15 possible loadings of each ?cell“, increased internal forces and reinforcement results to +20?% have been obtained. Next, a storage facility of bulk materials with dimensions 36′120?m in plane has been considered, when expected 16 loadings, 1/4 for each of four storage sectors, has been used in the FEM model. The results of the comparison with the ordinary calculation, in which each of sectors could be fully filled or be empty, have presented. The investigation results can be used for developing of industrial recommendations for the designing of storage facilities.
机译:研究了克莱佩达(立陶宛,欧盟)海港钢筋混凝土墙和储存设施的钢筋混凝土墙壁和基础板的应力/应变状态,考虑到储存散装材料的载荷分布。首先,已经计算了一个简单的测试问题:在24列上的平面中加固板21'35?M,其通过常规步骤。在创造每个Δ细胞的所有15个可能的装载量的组合期间,已经获得了增加的内部力和增强导致+20倍。接下来,已经考虑了平面尺寸36'120·m的散装材料的储存设施,当预期的16个负载量为每个四个存储扇区的16个负载,已经在有限元模型中使用。呈现了与普通计算的比较结果,其中每个扇区可以完全填充或空虚。调查结果可用于制定用于设计存储设施的工业建议。

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