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THE MASS BURNING RATE OF n-HEPTANE POOL FIRE UNDER DYNAMIC PRESSURE

机译:动态压力下正庚烷池火的大规模燃烧速率

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Fire safety is critical for safety of airplane operation. During an emergency landing, airplane goes through dramatic external pressure change from cruise altitude to sea level, considering the impact caused by low pressure atmosphere. The objective of this work is to examine the effect of dynamic pressure on the behavior of a horizontally burning diffusion flame over a pool fuel surface based on experimental approach. The experiments were conducted in a large-scale altitude chamber of size 2 m×3 m×4.65 m. The pressure rise process was examined under different dynamic pressures from respectively 38 kPa, 64 kPa and 75 kPa to 90 kPa with various pressure rise rates of 100 Pa/s, 150 Pa/s, 200 Pa/s, 250 Pa/s and 300 Pa/s, which is to simulate the airplane landing process from different altitudes. The whole system of the altitude chamber is of unique capability that the pressure in the chamber can be exactly controlled by a powerful pressure controlling system, and the oxygen concentration can maintain at the level about 20%, which are achieved through controlling inlet air flow for oxygen level and outlet gas flow for pressure (static or dynamic) level. A round steel fuel pans of 34 cm in diameter and 15 cm in height were chosen for the pool fire tests. The fuel pan was filled with 99% pure liquid n-Heptane. Cold water is added beneath the fuel layer to cool the pan and minimize the temperature rise in the fuel. Parameters such as mass, mass burning rate, chamber pressure were measured. The results of those tests demonstrated the significant impact to fire behaviors caused by high altitude or low pressure atmosphere.
机译:防火安全对飞机操作的安全至关重要。在紧急降落期间,考虑到由低压气氛造成的影响,飞机通过巡航高度从巡航高度进行剧烈的外部压力变化。这项工作的目的是基于实验方法检查动态压力对水平燃烧扩散火焰的行为的影响。实验是在大尺寸2 m×3m×4.65米的大尺寸高度室进行的。从分别为38kPa,64kPa和75kPa至90kPa的不同动态压力下检查压力升压过程,各种压力上升速率为100pa / s,150 pa / s,200 pa / s,250 pa / s和300 PA / S,用于模拟从不同高度的飞机着陆过程。高度腔室的整个系统具有独特的能力,即腔室中的压力可以完全由强大的压力控制系统控制,并且氧气浓度可以保持在约20%的水平,这通过控制入口空气流动实现用于压力(静态或动态)水平的氧气水平和出口气体流量。选择圆形钢燃料盘34厘米,高度为15厘米,池火​​试验。燃料盘填充有99%纯液态正庚烷。在燃料层下方加入冷水以冷却锅并最小化燃料中的温度升高。测量质量,质量燃烧速率,腔室压力等参数。这些测试的结果表明,对高海拔或低压气氛引起的火灾行为的显着影响。

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