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首页> 外文期刊>Journal of Fire Sciences >A modified zone model on vertical cable tray fire in a confined compartment in the nuclear power plant
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A modified zone model on vertical cable tray fire in a confined compartment in the nuclear power plant

机译:核电站密闭空间内垂直电缆桥架着火的改进区域模型

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摘要

Room fire with vertical cable tray involves upward flame spread along the cable. Assessing the vertical cable tray fire hazard in confined spaces has been challenging because of the strong coupling between flame spread and heat transfer. Long computing time is required in using sophisticated field model with computational fluid dynamics. Therefore, developing an appropriate zone model in a cable room fire with experimental validation is required for engineering applications. In this study, a vertical cable tray fire in a confined compartment was simulated using a modified zone model along three new areas on having temporal variations of the fire position, upward-spreading cable flame considered as a burning source moving at a constant speed, and validated through full-scale experiments on vertical cable tray fire with two typical cable-line spacing. The modified zone model can predict accurately the upper-layer temperature in the compartment. The accuracy is at least 25% higher than the model with fixed fire position. The measured temperature at different heights started to decrease at different times, which was due to the vertical spreading of the cable flame. For interface height, the relative error and normalized Euclidean distance in the time-varying fire position model can be improved by 50%.
机译:带有垂直电缆桥架的室内火灾涉及沿电缆向上蔓延的火焰。由于狭窄的火焰传播和热传递之间存在很强的耦合性,因此在狭窄的空间中评估垂直电缆桥架着火的危险性具有挑战性。在使用具有计算流体动力学的复杂现场模型时,需要很长的计算时间。因此,工程应用需要在电缆室火灾中开发适当的区域模型并进行实验验证。在这项研究中,使用修改后的区域模型沿着三个新区域模拟了密闭隔间中的垂直电缆桥架着火,这些区域具有着火位置随时间变化,向上传播的电缆火焰被视为以恒定速度移动的燃烧源以及通过具有两个典型电缆线间距的垂直电缆桥架火的全面实验进行了验证。改进的区域模型可以准确地预测车厢中的上层温度。精度比固定射击位置的模型高至少25%。由于电缆火焰的垂直扩散,在不同高度处测得的温度在不同时间开始下降。对于界面高度,时变火位置模型中的相对误差和标准化的欧几里德距离可以提高50%。

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