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Design and Analysis of A Large Equipment Shelter Structure

机译:大型设备防护棚结构设计与分析

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With the development of miniaturization of equipment, the equipment in the shelter has higher and higher requirements for heat insulation. The liquid cooling system can effectively improve the heat insulation ability, but the cooling system has a large weight, and the rigidity and strength requirements of the outer shelter structure are high, especially the hoisting state of the shelter, which is a dangerous working condition during the use of the shelter. This type of shelter should focus on the load-bearing area during the design process, and combine the finite element method to verify the simulation and improve the design efficiency. For the characteristics of the layout of a certain type equipment shelter, a special design is presented in this paper. The area with large load was partially strengthened, and the finite element model of the shelter skeleton was established under the premise of reasonable simplification. The stiffness and intensity of the shelter structure were analyzed by finite element method. The analysis results shows that the type of the shelter is reasonable and feasible, and the finite element method has a strong guiding significance in structural design, it also shows that the finite element method can effectively improve the design quality.
机译:随着设备小型化的发展,掩蔽处的设备对隔热的要求越来越高。液体冷却系统可以有效地提高隔热能力,但是该冷却系统重量大,对外部遮蔽结构的刚度和强度要求很高,尤其是遮蔽物的提升状态,在使用过程中是危险的工作状态。庇护所的使用。这种类型的避难所在设计过程中应着重于承重区域,并结合有限元方法进行仿真验证并提高设计效率。针对某类设备防护棚的布置特点,提出了一种特殊的设计方案。对部分大荷载区域进行了部分加固,并在合理简化的前提下建立了避难所骨架的有限元模型。住房结构的刚度和强度通过有限元方法进行了分析。分析结果表明,避难所的类型是合理可行的,有限元法在结构设计中具有很强的指导意义,也表明有限元法可以有效地提高设计质量。

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