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首页> 外文期刊>Journal of loss prevention in the process industries >Heat transfer to bodies engulfed in di-tert-butyl peroxide pool fires - Numerical simulations
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Heat transfer to bodies engulfed in di-tert-butyl peroxide pool fires - Numerical simulations

机译:热量传递到吞没在二叔丁基过氧化物池火中的物体-数值模拟

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The thermal response of bodies engulfed in di-tert-butyl peroxide (DTBP) pool fires is studied numerically. High heat release rates, high velocities and high emissive powers portray the combustion of DTBP. This makes exceptionally hazard for bodies engulfed in DTBP fire accidents. The concept of adiabatic surface temperature (AST) is applied for DTBP pool fires to circumvent the difficulty of defining the fire exposure boundary condition at the solid surface. Adiabatic surface temperatures (AST) are computed for pool diameters 1.13 m and 3.4 m using the fire dynamics simulator. The thermal response of cask in a 1.13 m DTBP pool fire is studied to verify the concept of AST. It is found that a cask encounters twofold the heat fluxes in DTBP fires than in diesel pool fires. More than 30% of the net heat flux to the cask is a direct result of the convective heat exchange between the fire and the cask. This implies that the regular safety guidelines formulated for hydrocarbon pool fires are not adequate for the safety of the bodies engulfed in DTBP pool fires. (C) 2016 Elsevier Ltd. All rights reserved.
机译:数值研究了包裹在过氧化二叔丁基过氧化物(DTBP)池火中的物体的热响应。高放热率,高速度和高发射功率描绘了DTBP的燃烧。这对卷入DTBP火灾事故的尸体构成极大的危害。绝热表面温度(AST)的概念适用于DTBP池火,以规避在固体表面定义火暴露边界条件的困难。使用火灾动力学模拟器计算池直径为1.13 m和3.4 m的绝热表面温度(AST)。研究了1.13 m DTBP池火中桶的热响应,以验证AST的概念。发现在DTBP火灾中,木桶遇到的热通量是柴油池火灾中的热通量的两倍。到木桶的净热通量的30%以上是火和木桶之间对流热交换的直接结果。这意味着为碳氢化合物池火制定的常规安全准则不足以保护被DTBP池火吞没的尸体的安全。 (C)2016 Elsevier Ltd.保留所有权利。

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