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A simplified method for evaluating sloshing impact pressure on a flat roof based on Wagner’s theory

机译:一种简化的方法,用于基于瓦格纳理论对平屋屋顶上的晃动冲击压力进行评估

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In sodium-cooled fast reactors, free liquid surfaces are found in several important components, including reactor vessels; sloshing due to earthquakes is one of the major concerns in design. Especially in cases where seismic isolation systems are installed to prevent or reduce damages to facilities due to earthquakes, periods of vibration are lengthened and become close to natural sloshing periods. As a result, sloshing is more likely to occur. In severe seismic conditions, sloshing waves are considered to even reach a roof slab of a reactor vessel. The structural integrity of roof slabs is required to be evaluated against sloshing impacts. However, there is no widely recognized evaluation method for sloshing impact pressure on flat roofs yet. Therefore, in this paper, a simplified evaluation method is proposed based on Wagner’s theory, which is a well-known classic theory for evaluating impact pressures on rigid wedges dropping on water surfaces. In the proposed method, we assume an equivalent wedge on a flat roof. The impact pressure on the equivalent wedge is evaluated by applying Wagner’s theory. Computational fluid dynamics analysis is conducted to confirm that a key assumption of Wagner’s theory is applicable to the evaluation of sloshing impact on a flat roof. In addition, the predictability of the proposed method is investigated by comparing literature data of sloshing experiments with the estimated values.
机译:在冷却的快速反应器中,在几种重要组分中发现游离液面,包括反应器容器;由于地震而导致的晃动是设计中的主要问题之一。特别是在安装地震隔离系统以防止或减少由于地震引起的设施损坏的情况下,振动的时期延长并变得靠近天然晃动时期。结果,更有可能发生晃动。在严重的地震条件下,晃动波被认为甚至到达反应器容器的屋顶板。屋顶板的结构完整性需要根据晃动影响来评估。然而,没有广泛认可的评估方法,用于悬挂压力平屋顶。因此,在本文中,提出了一种基于瓦格纳理论的简化评估方法,这是一种众所周知的经典理论,用于评估刚性楔子上滴在水面上的冲击压力。在该方法中,我们在平顶屋顶上假设相同的楔形。通过应用瓦格纳的理论来评估等效楔上的冲击压力。进行计算流体动力学分析以确认瓦格纳理论的关键假设适用于对平屋顶的晃动影响的评估。此外,通过将晃动实验的文献数据与估计值进行比较来研究所提出的方法的可预测性。

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