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Dynamic response of single-layer reticulated shell with explosion-protection wall under blast loading

机译:爆炸载荷作用下带防爆壁的单层网壳的动力响应

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To investigate the structural dynamic response of long span reticulated shell under external blast loading considering explosion-protection wall, explicit finite element (FE) programme LS-DYNA is used to set up the analytical model of explosion-protection wall corresponding to an experiment to grasp the propagation law of blast shock waves around the wall. The results of simulation and experiment are compared and the results verify the creditability and applicability of numerical simulation by using ALE (Arbitrary-Lagrange-Euler) algorithm. A Kiewitt8 single-layer reticulated shell of refinement with span of 40 m is established to simulate the responses of structure considering explosion-protection wall, which contains reticulated shell member, purlin hanger, purlin, rivet and roof boarding. According to simulation results from the maximum nodal displacement, average plastic strain and yielding degree of cross section of reticulated shell member, the dynamic response laws are proposed based on varying parameters, including height, position, length, material of the explosion-protection wall, rise span ratio of reticulated shell and TNT explosive weights. Meanwhile, the influence rules of explosion-protection wall and structure on diffraction and reflection action of blast shock wave are obtained. In addition, the adverse height of the explosion-protection wall for reticulated shell with span of 40 m under external blast loading is proposed. Four damage types of reticulated shell with the explosion-protection wall subject to external blast loading are defined by summarizing all the structural response of FE numerical models, which could provide reference for reasonable explosion-proof design for reticulated shell structure.
机译:为了研究考虑爆炸防护墙的大跨度网壳在爆炸冲击荷载作用下的结构动力响应,采用显式有限元程序LS-DYNA建立了对应于实验的爆炸墙的解析模型。爆炸冲击波在壁面的传播规律。比较了仿真结果和实验结果,并利用ALE算法对数值仿真的可信度和适用性进行了验证。建立了跨度为40 m的细化Kiewitt8单层网状壳,以模拟考虑了防爆墙的结构响应,其中包含网状壳,member条,pur条,铆钉和屋顶板。根据最大节点位移,平均塑性应变和网状壳构件横截面屈服程度的仿真结果,根据不同的参数,包括高度,位置,长度,防爆壁的材料,提出了动态响应规律。网壳和TNT炸药重量的上升跨度比。同时,得出了防爆墙和结构对爆炸冲击波的衍射和反射作用的影响规律。此外,提出了爆炸荷载作用下跨距为40 m的网壳防爆壁的不利高度。通过总结有限元数值模型的所有结构响应,定义了防爆墙受外部爆炸荷载作用下的四类网壳的破坏类型,为网壳结构合理的防爆设计提供参考。

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