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On the fluid dynamics of the make-up inlet air and the prediction of anomalous fire dynamics in a large-scale facility

机译:大型设施补充进气的流体动力学及异常火力动力学的预测

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The present paper is focused on the fluid dynamics of the make-up air at the vents in case of an atrium fire, its influence on the fire-induced conditions and the necessity of properly modelling it to obtain a reliable numerical prediction. For this aim, experimental data from two full-scale atrium fire tests conducted in a 20 m cubic facility, with venting conditions involving mechanical smoke exhaust and make-up air velocities larger than 1 m/s, and with different fire powers, are presented. Subsequent numerical simulations of these tests have been performed with the code Fire Dynamics Simulator v5.5.3. Two different approaches have been followed to simulate the make-up air inlet fluid dynamics, involving one domain which only considers the inside of the building and another which includes part of the outside. In the former simulations, anomalous phenomena around the fire appear, while the inclusion of part of the exterior domain results in completely different fluid dynamics inside the facility, which agrees better with the experimental data. A detailed analysis of the fluid mechanics at the air inlet vents is conducted to explain these discrepancies. Finally, further simulations are performed varying the make-up area and the exterior extension to assess the appearance of the aforementioned phenomenon.
机译:本文着重研究中庭火灾情况下补风处通风口的流体动力学,其对起火条件的影响以及正确建模以获取可靠的数值预测的必要性。为此目的,提供了在20 m3设施中进行的两次全面中庭火灾测试的实验数据,通风条件涉及机械排烟和补充空气流速大于1 m / s,并且具有不同的火力。 。随后使用代码Fire Dynamics Simulator v5.5.3对这些测试进行了数值模拟。已经采用了两种不同的方法来模拟补充空气入口流体动力学,其中一种方法只考虑建筑物的内部,而另一种则考虑建筑物的外部。在以前的模拟中,火灾周围会出现异常现象,而包含部分外部区域会导致设施内部的流体动力学完全不同,这与实验数据更加吻合。对进气孔处的流体力学进行了详细分析,以解释这些差异。最后,进行进一步的模拟,改变化妆区域和外部延伸,以评估上述现象的出现。

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