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Numerical modeling for compartment fire environment under a solid-cone water spray

机译:实心圆锥形喷水条件下车厢火灾环境的数值模拟

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A mathematical model was developed for simulating the fire environment of a compartment under the action of a solid-cone water spray such as those discharged from a water mist fire suppression system. A smoke layer was induced by a fire in the compartment. The solid-cone water spray was discharged to act on the smoke layer, but not on the burning object. Under this condition of having a stable smoke layer, the compartment was divided into three regions. Region 1 is the upper hot smoke layer, Region 2 is the lower cool air layer and Region 3 is the solid-cone spray. The effects on the smoke layer development due to spray-induced flow were considered on the basis of mass, momentum and heat conservation. Water droplets of the solid-cone spray were divided into four typical classes based on the droplet distribution function. The parameters including the smoke layer interface height, smoke temperature and air temperature, smoke flow rate through the opening and oxygen concentration in the air layer were investigated under various heat release rates, water application rates and volume mean diameters of the solid-cone spray. Effective hot gas entrainment and water vapor pro-duction suggested that the water spray should contain a variety of droplet size. In this way, a compartment fire can be controlled effectively through indirect interaction such as oxygen concentration depletion.
机译:建立了数学模型,以模拟在诸如水雾灭火系统排放的固体圆锥形喷水的作用下车厢的着火环境。车厢中的火灾引起了一层烟。排出的固体锥形喷水喷雾作用在烟雾层上,而不作用在燃烧的物体上。在具有稳定烟雾层的条件下,将车厢分为三个区域。区域1是上层热烟层,区域2是下层冷空气层,区域3是实心锥形喷雾。在质量,动量和热量守恒的基础上,考虑了由喷雾引起的流动对烟层形成的影响。基于液滴分布函数,将实心圆锥形喷雾的水滴分为四个典型类别。在不同的放热率,加水率和固体锥形喷雾的体积平均直径下,研究了包括烟层界面高度,烟温度和空气温度,通过开口的烟流量以及空气层中的氧气浓度在内的参数。有效的夹带热气和产生水蒸气表明,水喷雾应包含各种液滴尺寸。这样,可以通过诸如氧浓度消耗之类的间接相互作用来有效地控制舱室着火。

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