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181.
毕明 《中国人民武装警察部队学院学报》2013,29(8):42-44
准安全区、燃料岛和独立防火单元是最近几年随消防性能化设计而发展起来的新的防火理念,在性能化设计中灵活应用这些理念,可以使得复杂建筑的消防设计成为可能.结合昆明市某大空间“房中房”建筑,分析了这些理念在该建筑中的应用.其基本方法是,对大空间内局部具有围护结构的部分采用独立防火单元设计,对大空间敞开的展示区域采用燃料岛以控制火灾规模,将贯通的大空间区域考虑为准安全区.通过这样的设计,有效地解决了该建筑疏散距离过长、防火分区过大及部分区域难以安装报警、喷淋系统的问题. 相似文献
182.
本文报道的MFTA(Multi-stateFaultTreeAnalysis)软件为可靠性工程师分析多状态系统提供一种计算机辅助分析工具。我们设计了友好的Windows95用户交互界面 ,采用树视图组件实现逻辑树结构框架的输入 ,采用字符串表格组件实现判定表的直接输入 (立方体形式的 0 -1序列 ) ,还实现了多态单调关联典型结构函数到立方体形式判定表的转化。以标准模板库 (StandardTemplateLibrary)为基础 ,采用面向对象程序设计方法构建了立方体类库 ;然后 ,实现了以立方体理论为核心的MFTA定性定量分析算法 ,完成了软件的研制。 相似文献
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184.
管道气液固三相流的耦合瞬变模型研究 总被引:1,自引:0,他引:1
在管输水力瞬变过程中,管道与流体之间存在耦合互动作用,需要用流固耦合模型来进行描述.针对工程中的多相流动问题,以最常见的气液固三相流为对象,建立了考虑流固耦合效应的水力瞬变模型.通过改变流体中固相或气相的体积分数,模型可适用于气液、固液两相流以及纯液体单相流的耦合水力瞬变,是单相流耦合瞬变模型向多相流耦合瞬变模型的拓展... 相似文献
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Shockwaves from fuel-air explosive (FAE) cloud explosions may cause significant casualties. The ground overpressure field is usually used to evaluate the damage range of explosion shockwaves. In this paper, a finite element model of multi-sources FAE explosion is established to simulate the process of multiple shockwaves propagation and interaction. The model is verified with the experimental data of a fourfold-source FAE explosion, with the total fuel mass of 340 kg. Simulation results show that the overpressure fields of multi-sources FAE explosions are different from that of the single-source. In the case of multi-sources, the overpressure fields are influenced significantly by source scattering distance and source number. Subsequently, damage ranges of overpressure under three different levels are calculated. Within a suitable source scattering distance, the damage range of multi-sources situation is greater than that of the single-source, under the same amount of total fuel mass. This research provides a basis for personnel shockwave protection from multi-sources FAE explosion. 相似文献
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针对传统地面目标威胁评估方法考虑目标类型单一、易受人为主观因素影响且多为静态评估的问题,提出一种基于动态贝叶斯网络的无人战车目标威胁评估方法.分析了无人战车作战问题,选取合理的目标特征并进行模糊处理;根据选取的目标特征,结合专家知识,建立了威胁评估的静态贝叶斯网络;基于动态贝叶斯网络理论,将已建立的静态贝叶斯网络扩展为动态贝叶斯网络;最后,结合算例进行了仿真,并将动态评估结果与静态结果进行对比,表明基于动态贝叶斯网络的威胁评估准确率高、鲁棒性强,更适用于高动态强对抗的实际战场环境. 相似文献
189.
The explosive reaction degree and protection from explosions are concerns in the military field.In this work,the reaction degree of the composition B explosive was investigated experimentally.Multi-layered compound structures were used as barriers to weaken the blast loads.A comprehensive experiment using a high-speed camera and image processing techniques,side witness plates,and bottom witness plates was presented.Using the experimental fragment velocities,fragment piercing patterns,and damage characteristics,the reaction degree of the explosive impeded by different multi-layered com-pound structures could be precisely differentiated.Reaction parameters of the explosive obstructed by compound structures were obtained by theoretical analysis and numerical simulations.Unlike the common method in which the explosive reaction degree is only distinguished based on the initial pressure amplitude transmitted into the explosive,a following shock wave reflected from the side steel casing was also considered.Different detonation growth paths in the explosive formed.Therefore,all these shock wave propagation characteristics must be considered to analyze the explosive response impeded by compound structures. 相似文献
190.
Zeng Liu Cheng-lei Fan Zhu Ming Chao Chen Ang Liu Chun-li Yang San-bao Lin Lang-ping Wang 《防务技术》2021,17(3):923-931
High nitrogen stainless steel with nitrogen content of 0.75%was welded by gas metal arc welding with Ar—N2-O2 ternary shielding gas. The effect of the ternary shielding gas on the retention and improvement of nitrogen content in the weld was identified. Surfacing test was conducted first to compare the ability of O2 and CO2 in prompting nitrogen dissolution. The nitrogen content of the surfacing metal with O2 is slightly higher than CO2. And then Ar—N2-O2 shielding gas was applied to weld high nitrogen stainless steel. After using N2-containing shielding gas, the nitrogen content of the weld was improved by 0.1 wt%. As N2 continued to increase, the increment of nitrogen content was not obvious, but the ferrite decreased from the top to the bottom. When the proportion of N2 reached 20%, a full austenitic weld was obtained and the tensile strength was improved by 8.7%. Combined with the results of surfacing test and welding test, it is concluded that the main effect of N2 is to inhibit the escape of nitrogen and suppress the ni-trogen diffusion from bottom to the top in the molten pool. 相似文献