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Effects of Ventilation and Fire Power on Bulkhead Damage by Temperature Simulation Model and Experiment Analysis

机译:温度仿真模型及实验分析对通风和火力对舱壁损伤的影响

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Since the thermal conductivity of steel is very high, the high temperature distribution in many scenarios may cause the structure easy to be damaged in terms of performance of ship cabin. Steel is the main constituent material structure of the ship while the long time heating during the fires will result in declining the structure performance of the cabin. Study how to remain or reduce averaged bulkhead temperature becomes an important task in either structure performance design or fireproof optimization. This paper uses FDS (Fire Dynamics Simulator) which has a large eddy simulation turbulence model to do the simulation on full-scale fire tests of ship under different ventilation conditions. The results show that the HRR (Heat Release Rate) is not proportional to the ventilation area. The error between FDS simulation and experiment are close within 25%.
机译:由于钢的导热率非常高,因此许多情况下的高温分布可能导致结构易于在船舱的性能方面损坏。钢是船舶的主要组成材料结构,而火灾期间的长时间加热将导致驾驶室的结构性能下降。研究如何保持或降低平均舱壁温度成为结构性能设计或防火优化的重要任务。本文采用FDS(消防动力学模拟器)具有大型涡流仿真湍流模型,以便在不同通风条件下进行全尺寸消防试验的仿真。结果表明,HRR(热释放率)与通风区不成比例。 FDS仿真和实验之间的误差在25%以内接近。

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