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111.
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结合斜流沉淀结构的特点,分析了流道内液芬布对颗粒沉淀过程的影响;污水中颗粒粒径分布对去除率的影响,从而理论上推导上流式斜流沉去除率的计算公式 相似文献
113.
提出了一种基于AutoCAD软件的确定复杂形状旋转体拉深毛坯直径的计算机方法,它操作严谨、结果准确,比原有的3种方法简捷、快速,具有良好的推广应用价值。 相似文献
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Liquefied natural gas (LNG) is widely used to cost-effectively store and transport natural gas. However, a spill of LNG can create a vapor cloud, which can potentially cause fire and explosion. High expansion (HEX) foam is recommended by the NFPA 11 to mitigate the vapor hazard and control LNG pool fire. In this study, the parameters that affect HEX foam performance were examined using lab-scale testing of foam temperature profile and computational fluid dynamics (CFD) modeling of heat transfer in vapor channels. A heat transfer model using ANSYS Fluent® was developed to estimate the minimum HEX foam height that allows the vapors from LNG spillage to disperse rapidly. We also performed a sensitivity analysis on the effect of the vaporization rate, the diameter of the vapor channel, and the heat transfer coefficient on the required minimum height of the HEX foam. It can be observed that at least 1.2 m of HEX foam in height are needed to achieve risk mitigation in a typical situation. The simulation results can be used not only for understanding the heat transfer mechanisms when applying HEX foam but also for suggesting to the LNG facility operator how much HEX foam they need for effective risk mitigation under different conditions. 相似文献
116.
Accidental explosions are a plausible danger to the chemical process industries. In the event of a gas explosion, any obstacles placed within the path of the flame generate turbulence, which accelerates the transient flame and raises explosion overpressure, posing a safety hazard. This paper presents numerical studies using an in-house computational fluid dynamics (CFD) model for lean premixed hydrogen/air flame propagations with an equivalence ratio of 0.7. A laboratory-scale combustion chamber is used with repeated solid obstacles. The transient compressible large eddy simulation (LES) modelling technique combined with a dynamic flame surface density (DFSD) combustion model is used to carry out the numerical simulations in three-dimensional space. The study presented uses eight different baffle configurations with two solid obstructions, which have area blockage ratios of 0.24 and 0.5. The flame speed, maximum rate of pressure-rise as well as peak overpressure magnitude and timing are presented and discussed. Numerical results are validated against available published experimental data. It is concluded that, increasing the solid obstacle area blockage ratio and the number of consecutive baffles results in a raised maximum rate of pressure rise, higher peak explosion overpressure and faster flame propagation. Future model development would require more experimental data, probably in a more congested configuration. 相似文献
117.
利用煤质、木质、椰壳3种前驱体活性炭制得6种粒级共18种活性炭样品,作为催化剂进行催化臭氧降解草酸的效果研究.结果表明,减小活性炭粒径对催化臭氧氧化效率提升效果显著,160~300目活性炭催化臭氧氧化降解草酸速率常数是10~20目颗粒活性炭的9.2~19.0倍.煤质160~300目活性炭催化臭氧氧化降解效果最佳.活性炭粒径的倒数与催化臭氧氧化伪一级动力学速率常数呈线性关系.对官能团的滴定表明,活性炭表面的羟基数量与催化臭氧氧化一级动力学速率常数存在较为明显的指数关系. 相似文献
118.
Reinhard Furrer Stephan R. Sain Douglas Nychka Gerald A. Meehl 《Environmental and Ecological Statistics》2007,14(3):249-266
Numerical experiments based on atmosphere–ocean general circulation models (AOGCMs) are one of the primary tools in deriving
projections for future climate change. Although each AOGCM has the same underlying partial differential equations modeling
large scale effects, they have different small scale parameterizations and different discretizations to solve the equations,
resulting in different climate projections. This motivates climate projections synthesized from results of several AOGCMs’
output. We combine present day observations, present day and future climate projections in a single highdimensional hierarchical
Bayes model. The challenging aspect is the modeling of the spatial processes on the sphere, the number of parameters and the
amount of data involved. We pursue a Bayesian hierarchical model that separates the spatial response into a large scale climate
change signal and an isotropic process representing small scale variability among AOGCMs. Samples from the posterior distributions
are obtained with computer-intensive MCMC simulations. The novelty of our approach is that we use gridded, high resolution
data covering the entire sphere within a spatial hierarchical framework. The primary data source is provided by the Coupled
Model Intercomparison Project (CMIP) and consists of 9 AOGCMs on a 2.8 by 2.8 degree grid under several different emission
scenarios. In this article we consider mean seasonal surface temperature and precipitation as climate variables. Extensions
to our model are also discussed. 相似文献
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目的建立实验室降雪环境模拟技术,为飞机等武器装备降雪环境适应性试验验证提供技术支持。方法基于对自然降雪和实验室模拟降雪机理的对比与分析,提出影响实验室内模拟降雪的关键因素,并结合理论分析和试验研究,得出实验室内模拟降雪环境的冷负荷计算方法和最优成雪的水粒直径。结果建立了实验室降雪环境模拟技术,采用该降雪环境模拟技术,降雪强度及降雪品质均满足飞机等武器装备降雪环境适应性试验验证需求。结论建立的降雪环境模拟技术切实有效,可用于实验室飞机等武器装备降雪环境适应性试验研究。 相似文献