http://scholars.ntou.edu.tw/handle/123456789/17479
標題: | Numerical Study of Pressure Attenuation Effect on Tunnel Structures Subjected to Blast Loads | 作者: | Hung, Cheng-Wei Tsai, Ying-Kuan Chen, Tai-An Lai, Hsin-Hung Wu, Pin-Wen |
關鍵字: | blast;tunnel;pressure reduction module;LS-DYNA | 公開日期: | 1-六月-2021 | 出版社: | MDPI | 卷: | 11 | 期: | 12 | 來源出版物: | APPLIED SCIENCES-BASEL | 摘要: | This study used experimental and numerical simulation methods to discuss the attenuation mechanism of a blast inside a tunnel for different forms of a tunnel pressure reduction module under the condition of a tunnel near-field explosion. In terms of the experiment, a small-scale model was used for the explosion experiments of a tunnel pressure reduction module (expansion chamber, one-pressure relief orifice plate, double-pressure relief orifice plate). In the numerical simulation, the pressure transfer effect was evaluated using the ALE fluid-solid coupling and mapping technique. The findings showed that the pressure attenuation model changed the tunnel section to diffuse, reduce, or detour the pressure transfer, indicating the blast attenuation effect. In terms of the effect of blast attenuation, the double-pressure relief orifice plate was better than the one-pressure relief orifice plate, and the single-pressure relief orifice plate was better than the expansion chamber. The expansion chamber attenuated the blast by 30%, the one-pressure relief orifice plate attenuated the blast by 51%, and the double-pressure relief orifice plate attenuated the blast by 82%. The blast attenuation trend of the numerical simulation result generally matched that of the experimental result. The results of this study can provide a reference for future protective designs and reinforce the U.S. Force regulations. |
URI: | http://scholars.ntou.edu.tw/handle/123456789/17479 | DOI: | 10.3390/app11125646 |
顯示於: | 河海工程學系 |
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