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细水雾与固体木垛火相互作用的实验研究 总被引:1,自引:0,他引:1
为了更好地研究细水雾熄灭固体火焰的机理及其有效性 ,建立了单流低压细水雾灭火模拟实验平台 ,在 3m× 3m× 3m的受限空间中开展了一系列的灭火实验。实验过程中采用了两种不同功率的木垛火源 ,利用热电偶和红外热像仪对细水雾施加前后的火焰的温度场进行了实时观察研究 ,结果表明当细水雾的压力低于 0 .2 MPa时 ,细水雾不能有效地扑灭木垛火 ,当细水雾的压力较低时 ,喷嘴距火焰表面的距离和细水雾施加的流量是影响细水雾灭火有效性的关键因素 ;同时 ,功率越大的木垛火 ,越易被细水雾扑灭。 相似文献
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受限空间中细水雾灭火的准稳态模型 总被引:4,自引:0,他引:4
通过受限空间中大量细水雾灭火实验,总结出预测细水雾系统灭火效果的准稳态模型。该模型是针对细水雾扑灭有障碍火的情况而发展的,火焰的熄灭主要是由于燃料燃烧耗氧和细水雾汽化稀释造成氧气浓度的降低而导致的,忽略了细水雾与火焰的直接作用,模型基于能量守衡,要求输入以下参数:火源功率、受限空间的几何结构、通风口面积和细水雾施加流量,通过模型预测出稳态时受限空间的温度和氧气浓度,进而可以确定临界火源的尺度(功率大小),同时能准确预测较大功率范围火的熄灭时间。 相似文献
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In order to investigate the behavior of external welded flange-bolted web joints of steel structure exposed to fire,a series of experiments were carried out.Influence of fire model and load ratio on the behavior of the joints,failure characteristics and fracture modes of the joints exposed to fire were studied.The experimental results indicated that the fire model has a great influence on the temperature rising as well as temperature distribution of the joints exposed to fire.A slower temperature rising fire will lead to slower temperature rising and more uniform temperature distribution of joint.Decrease of the load ratio will improve the fire-resistant capability of the joint.Furthermore,a highly detailed three-dimensional(3-D) finite element model(FEM) was set up with ANSYS software to predict the behavior of the external welded flange-bolted web joints exposed to fire.Comparisons between the predicted results and the experimental results indicated that FEM has an acceptable degree of accuracy to predict the behavior of this type of joints exposed to fire. 相似文献
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The Montreal Protocol was enacted in 1987 that sets a definite target that Halon fire sup-pressants are to be replaced by the beginning of 21century. So research work on replacements for halogen-based suppressants, such as water sprinkler, CO2, inert gas and foam, is in full swing. Water mist fire suppression systems are taken as one of the effective candidates for Halon re-placement; they have many advantages: not pollutant to environment (unharmful to the ozone layer without bringing green… 相似文献
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