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121.
现行的国家工程建设消防技术标准,在实践过程中暴露出一些问题。结合工作实践经验,对高层民用建筑消防登高面、作业场地等消防登高作业区域设计中存在的问题进行了探讨,并提出了相应的解决方案。 相似文献
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量化判定空袭目标威胁等级是数字化战场信息融合的重要内容,也是未来联合防空作战中指挥决策系统合理分配作战资源的基本依据。但是,空袭目标威胁等级的评判标准至今尚未统一,本文首先使用AHP法建立空袭目标威胁等级层次分析模型,针对AHP法构建成对比较矩阵过于繁琐及各指标权重难以把握的弊端,只针对层次分析模型最下层的相关指标进行分析并提出量化方法,随后根据量化数值直接构建判断矩阵,并结合DELPHI法给出诸项评估指标的权重。最后,通过实例验证了该模型的有效性和准确性。 相似文献
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In order to understand the mechanism of conoidal fracture damage caused by a high-speed fragment-simulating projectile in titanium alloy layer of a composite armor plate composed of titanium- and aluminum-alloy layers, the ballistic interaction process was successfully simulated based on the Tuler-Butcher and GISSMO coupling failure model. The simulated conoidal fracture morphology was in good agreement with the three-dimensional industrial-computed-tomography image. Further, three main damage zones (zones I, II, and III) were identified besides the crater area, which are located respectively near the crater area, at the back of the target plate, and directly below the crater area. Under the high-speed-impact conditions, in zone II, cracks began to form at the end of the period of crack formation in zone I, but crack formation in zone III started before the end of crack formation in zone II. Further, the damage mechanism differed for different stress states. The microcracks in zone I were formed both by void connection and shear deformation. In the formation of zone I, the stress triaxiality ranged from-2.0 to-1.0, and the shear failure mechanism played a dominant role. The microcracks in zone II showed the combined features of shear deformation and void connection, and during the for-mation process, the stress triaxiality was between 0 and 0.5 with a mixed failure mode. Further, the microcracks in zone III showed obvious characteristics of void connection caused by local melting. During the zone III formation, the triaxiality was 1.0-1.9, and the ductile fracture mechanism was dominant, which also reflects the phenomenon of spallation. 相似文献
129.
Jian-hao Dou Xin Jia Zheng-xiang Huang Xiao-hui Gu Ying-min Zheng Bin Ma Qiang-qiang Xiao 《防务技术》2021,17(3):846-858
The use of a shaped liner driven by electromagnetic force is a new means of forming jets. To study the mechanism of jet formation driven by electromagnetic force, we considered the current skin effect and the characteristics of electromagnetic loading and established a coupling model of"Electric—Magnetic—Force"and the theoretical model of jet formation under electromagnetic force. The jet formation and penetration of conical and trumpet liners have been calculated. Then, a numerical simulation of liner collapse under electromagnetic force, jet generation, and the stretching motion were performed using an ANSYS multiphysics processor. The calculated jet velocity, jet shape, and depth of penetration were consistent with the experimental results, with a relative error of less than 10%. In addition, we calculated the jet formation of different curvature trumpet liners driven by the same loading condition and ob-tained the influence rule of the curvature of the liner on jet formation. Results show that the theoretical model and the ANSYS multiphysics numerical method can effectively calculate the jet formation of liners driven by electromagnetic force, and in a certain range, the greater the curvature of the liner is, the greater the jet velocity is. 相似文献
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多通道舰空导弹武器系统反导决策模型研究 总被引:2,自引:0,他引:2
当前水面舰艇面临着严重的反舰导弹威胁,特别是在饱和攻击的条件下,常规的单通道舰空导弹系统已经不能满足作战的需要。多通道舰空导弹武器系统具有同时引导多枚导弹拦截多批目标的能力,可以充分发挥系统的能力,相应的反导决策在防空作战中起到重要作用,反导决策的正确性和合理性直接影响防空作战效果。在对反导决策过程和制约因素进行分析的基础上,通过0-1决策模型,得到了舰空导弹武器反导的优化决策模型,较好地满足了使用多通道舰空导弹系统对多目标打击决策的合理性和有效性。 相似文献