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应急照明和疏散指示系统设计——解读《〈火灾自动报警系统设计规范〉图示》 被引量:5
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作者 刘凯 张颖琮 +2 位作者 丁宏军 常立强 汪浩 《建筑电气》 2014年第9期17-22,共6页
梳理消防应急照明和疏散指示系统产品的分类及适用场所,分析消防应急照明和疏散指示系统的联动控制及状态信息反馈设计,并对国家建筑标准设计14X505-1《〈火灾自动报警系统设计规范〉图示》中应急照明和疏散指示系统的相关内容做了详细... 梳理消防应急照明和疏散指示系统产品的分类及适用场所,分析消防应急照明和疏散指示系统的联动控制及状态信息反馈设计,并对国家建筑标准设计14X505-1《〈火灾自动报警系统设计规范〉图示》中应急照明和疏散指示系统的相关内容做了详细的解析。 展开更多
关键词 火灾自动报警系统 图示 应急照明 散指示 集中控制 集中电源 非集中控制 自带电源
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魔光指引求生路—肖志国卖“光”赚钱
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作者 范佳丽 《中国报道》 2003年第3期48-50,共3页
关键词 肖志国 中国大连路明 发光材料 自发光散指示系统
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Deduction and Validation of an Eulerian-Eulerian Model for Turbulent Dilute Two-Phase Flows by Means of the Phase Indicator Function-Disperse Elements Probability Density Function
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作者 Santiago Laín Ricardo Aliod 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2000年第3期189-202,共14页
A statistical formalism overcoming some conceptual and practical difficulties arising in existing two-phase flow (2PHF) mathematical modelling has been applied to propose a model for dilute 2PHF turbulent Hows. Phase ... A statistical formalism overcoming some conceptual and practical difficulties arising in existing two-phase flow (2PHF) mathematical modelling has been applied to propose a model for dilute 2PHF turbulent Hows. Phase interaction terms with a clear physical meaning enter the equations and the formalism provides some guidelines for the avoidance of closure assumptions or the rational approximation of these terms. Continuous phase averaged continuity, momentum, turbulent kinetic energy and turbulence dissipation rate equations have been rigorously and systematically obtained in a single step. These equations display a structure similar to that for single-phase flows. It is also assumed that dispersed phase dynamics is well described by a probability density function (pdf) equation and Eulerian continuity, momentum and fluctuating kinetic energy equations for the dispersed phase are deduced. An extension of the standard k-e turbulence model for the continuous phase is used. A gradient transport model is adopted for the dispersed phase fluctuating fluxes of momentum and kinetic energy at the non-colliding, large inertia limit. This model is then used to predict the behaviour of three axisymmetric turbulent jets of air laden with solid particles varying in size and concentration. Qualitative and quantitative numerical predictions compare reasonably well with the three different sets of experimental results, studying the influence of particle size, loading ratio and flow confinement velocity. 展开更多
关键词 two-phase flow turbulence phase indicator function pdf ensemble average jet
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