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Parametric numerical analysis of fire-induced pressure variations in a well-confined and mechanically ventilated compartment

机译:在密闭和机械通风的舱室中火灾引起的压力变化的参数数值分析

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摘要

The investigation of a fire in a well-confined and mechanically ventilated compartment is of primary importance for the nuclear industry. In normal operating conditions, a ventilation network system is set-up to ensure confinement via an appropriate pressure cascade. In the event of a fire, the subsequent pressure build-up alters the confinement level significantly and therefore changes the level of safety of the installation. The fire-induced pressure variations depend mainly on the: (1) HRR (Heat Release Rate) history of the fire, (2) heat losses to the walls, (3) leakage area, and (4) operating conditions of the fans. A numerical parametric analysis on the latter three parameters, using the Fire Dynamics Simulator (FDS 5.5.3), have shown that a change in the initial ventilation parameters (i.e. operating conditions of the fans and/or leaks), which can be sometimes difficult to determine, may lead to substantial changes in the pressure profiles. However, only a change in the thermal boundary conditions (i.e. presence or no of insulation) produces significant changes in the gas temperature.
机译:对密闭且机械通风的舱室进行火灾调查对核工业至关重要。在正常运行条件下,将建立通风网络系统以确保通过适当的压力级联进行限制。发生火灾时,随后的压力累积会极大地改变密封等级,从而改变设备的安全等级。火灾引起的压力变化主要取决于:(1)火灾的HRR(热释放率)历史记录;(2)壁的热损失;(3)泄漏面积;以及(4)风扇的运行条件。使用Fire Dynamics Simulator(FDS 5.5.3)对后三个参数进行数值参数分析,结果表明,初始通风参数(即风扇的运行条件和/或泄漏)的变化有时会很困难。确定,可能会导致压力曲线的实质性变化。然而,仅热边界条件的改变(即绝热的存在或不存在)会导致气体温度的显着改变。

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