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高雷诺数下双圆柱绕流的数值模拟 总被引:16,自引:5,他引:11
本文使用表面涡法研究高雷诺数下不同排列方式双圆柱绕流的流动状态,计算了双圆柱在并列、串列及级列的情况下的各种流动结构,涡街的变化及作用在圆柱上的受力情况。本文结果清楚地描述了双圆柱绕流复杂的流动状况,计算结果与实验显示的流动状况十分相似,斯特罗哈数和阻力系数与实验结果符合得很好。 相似文献
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为满足当前潜艇部队训练的需要,针对尾流自导鱼雷齐射训练中可能出现的碰撞问题,以鱼雷散布为基础,分别对齐射时鱼雷进入尾流前发生碰撞,鱼雷过目标舰时与目标舰发生擦碰以及双雷齐射时两雷进入目标尾流后双雷碰撞的3种可能发生的情况进行分析,提出了采用两雷齐射时,设定1条雷的”操雷航程”,以避免两雷交叉,对两雷设定不同”海况”,使两雷航行在不同深度以及两雷反方向发射等避免碰撞的修正方法。该方法易于操作,可为尾流自导鱼雷安全训练提供有效保证。 相似文献
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Luiz Antonio Alcântara Pereira Miguel Hiroo Hirata Nelson Manzanares Filho 《Journal of Wind Engineering & Industrial Aerodynamics》2004,92(6):477-491
Two-dimensional, unsteady flow around bodies of complex geometry (or multiple bodies) at high Reynolds number is simulated using the vortex method. This method is modified to take into account the sub-grid scale phenomena through a second order velocity structure function model adapted to the Lagrangian scheme. The dynamics of the body wake is computed using the convection-diffusion splitting algorithm; the convection process is carried out with a Lagrangian Adams-Bashforth time-marching scheme and the diffusion process is simulated using the random walk method. The pressure distribution is obtained using an integral equation derived from the pressure Poisson equation, which was first developed for a single body. Results for the numerical simulation around a linear cascade of airfoils are presented. As the flow is periodic in the y direction, the discrete vortex shedding need only be considered for a reference airfoil. The flow characteristics around the NACA 65-410 series airfoils are calculated and comparisons are made with results available in the literature. 相似文献
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FLOW OF NEWTONIAN FLUIDS THROUGH SINUSOID ALLY CONSTRICTED TUBES. NUMERICAL AND EXPERIMENTAL RESULTS
J. A. Deiber Mb. Peirotti R. A. Bortolozzi R. J. Durelli 《Chemical Engineering Communications》1992,117(1):241-262
Numerical and experimental predictions of pressure drops in the flow of Newtonian fluids through sinusoidally constricted tubes (SCT) are carried out. The numerical evaluations analyzed in this work are obtained from the following methods: Geometric Iteration (GJM), Geometric Iteration with First and Second Upwinds (GIM1, GIM2), Successive Over Relaxation by Line (SORBLM), Global Galerkin Spectral Method (GGSM), Collocation (CM) and Dufort-Frankel (DFM). The GIM1, GIM2 and SORBLM are applied to SCT and explained in this work. The other methods have been previously reported in the literature with the same purpose. Experiments are accomplished for constrictions of approximately 40,60 and 80% of the average tube diameter and results compare well with numerical predictions of the steady flow. It is concluded that special attention should be given to evaluations of the friction factor ƒ for Reynolds numbers Re between the onsets of flow separation and turbulence due to flow instability. Finally, the SCT as a model for porous media (PM) is discussed. 相似文献
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加氢裂化反应器新型冷氢箱的研究与工程设计 总被引:6,自引:1,他引:5
报道了加氢加化反应器新型旋流式冷氢箱的研究设计及实用效果,催化剂床层径向温差不大于5℃。 相似文献
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有可能用于鱼雷尾流自导的某些光学特征 总被引:2,自引:0,他引:2
介绍了尾流自导鱼雷特点,研究了真实尾流的光学特性,提出了用于鱼雷尾流自导可能的光学特征。 相似文献
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M. Kemiha 《Chemical engineering science》2006,61(12):4041-4047
The present work aims at understanding the behavior of individual bubbles in non-Newtonian fluids. By means of a Particle Image Velocimetry (PIV) device, the complete flow field around either a single non-spherical bubble rising in polyacrylamide (PAAm) solutions or a solid sphere settling down in the same fluids shows for the first time the similar coexistence of three distinct zones: a central downward flow behind the bubble or the sphere (negative wake), a conical upward flow surrounding the negative wake zone, and an upward flow zone in front of the bubble or the sphere. This excludes then the possible influence of the interface deformation on the negative wake. A theoretical lattice Boltzmann scheme coupled to a sixth-order Maxwell model was developed for computing the complex flow field around a solid sphere. The good agreement with the experimental measurements provides evidence that the physical mechanism responsible for the negative wake in such fluids could be related to the fluid's viscoelastic properties. 相似文献