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Numerical Computation of Underground Inundation in Multiple Layers Using the Adaptive Transfer Method

机译:自适应转移法对多层地下淹没进行数值计算

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Extreme rainfall causes surface runoff to flow towards lowlands and subterranean facilities, such as subway stations and buildings with underground spaces in densely packed urban areas. These facilities and areas are therefore vulnerable to catastrophic submergence. However, flood modeling of underground space has not yet been adequately studied because there are difficulties in reproducing the associated multiple horizontal layers connected with staircases or elevators. This study proposes a convenient approach to simulate underground inundation when two layers are connected. The main facet of this approach is to compute the flow flux passing through staircases in an upper layer and to transfer the equivalent quantity to a lower layer. This is defined as the ‘adaptive transfer method’. This method overcomes the limitations of 2D modeling by introducing layers connecting concepts to prevent large variations in mesh sizes caused by complicated underlying obstacles or local details. Consequently, this study aims to contribute to the numerical analysis of flow in inundated underground spaces with multiple floors.
机译:极端降雨导致地表径流流向低地和地下设施,例如地铁站和人口稠密的市区内具有地下空间的建筑物。因此,这些设施和区域容易遭受灾难性的淹没。然而,由于难以再现与楼梯或电梯相连的相关的多个水平层,因此地下空间的洪水模型尚未得到充分研究。这项研究提出了一种方便的方法,当两层连接时模拟地下淹没。此方法的主要方面是计算通过上层楼梯的流量,并将等效量传递到下层。这被定义为“自适应转移方法”。该方法通过引入连接概念的层来克服二维建模的局限性,以防止由于复杂的潜在障碍或局部细节而导致的网格尺寸发生较大变化。因此,本研究旨在为多层淹没地下空间中流动的数值分析做出贡献。

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