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火灾条件下气承式膜结构内压 FDS 模拟

Translated title of the contribution: FDS Simulation of Internal Pressure of Air-Supported Membrane Structure Under Fire
  • School of Civil Engineering, Harbin Institute of Technology
  • Harbin Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

Taking the air-supported membrane structure as the research object, using the fire dynamics simulator(FDS), and considering the air leakage in the subgrid, the influencing factors of the internal pressure of the air-supported membrane structure without fire and the simulation method of the internal pressure under fire were studied. The results showed that the influence of air supply volume and leakage area should be considered in the internal pressure simulation of the air-supported membrane structure, and the larger the air supply volume, the smaller the leakage area, and the larger the corresponding stability value of the internal pressure. Based on the theoretical derivation and numerical simulation results, the internal pressure prediction formula of the air-supported membrane structure considering the influence of air supply volume and leakage area is obtained, and the prediction results of the formula are in good agreement with the simulation results. The simulation study on the internal pressure of the structure under fire finds that the internal pressure at ignition and the fire's heat release rate only affect the change process of the internal pressure but has no effect on the stability value of the internal pressure. Therefore, the fire can be ignited when the internal pressure is 0 Pa, so as to obtain the maximum value of the internal pressure of the fire and save the simulation time.

Translated title of the contributionFDS Simulation of Internal Pressure of Air-Supported Membrane Structure Under Fire
Original languageChinese (Traditional)
Pages (from-to)1176-1182
Number of pages7
JournalDongbei Daxue Xuebao/Journal of Northeastern University
Volume43
Issue number8
DOIs
StatePublished - Aug 2022

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