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171.
In order to study cross flow induced vibration of heat exchanger tube bundles, a new fluid–structure interaction model based on surface vorticity method is proposed. With this model, the vibration of a flexible cylinder is simulated at Re=2.67 × 104, the computational results of the cylinder response, the fluid force, the vibration frequency, and the vorticity map are presented. The numerical results reproduce the amplitude‐limiting and non‐linear (lock‐in) characteristics of flow‐induced vibration. The maximum vibration amplitude as well as its corresponding lock‐in frequency is in good agreement with experimental results. The amplitude of vibration can be as high as 0.88D for the case investigated. As vibration amplitude increases, the amplitude of the lift force also increases. With enhancement of vibration amplitude, the vortex pattern in the near wake changes significantly. This fluid–structure interaction model is further applied to simulate flow‐induced vibration of two tandem cylinders and two side‐by‐side cylinders at similar Reynolds number. Promising and reasonable results and predictions are obtained. It is hopeful that with this relatively simple and computer time saving method, flow induced vibration of a large number of flexible tube bundles can be successfully simulated. Copyright © 2004 John Wiley & Sons, Ltd. 相似文献
172.
The interplay between inertia and elasticity is examined for transient free‐surface flow inside a narrow channel. The lubrication theory is extended for the flow of viscoelastic fluids of the Oldroyd‐B type (consisting of a Newtonian solvent and a polymeric solute). While the general formulation accounts for non‐linearities stemming from inertia effects in the momentum conservation equation, and the upper‐convected terms in the constitutive equation, only the front movement contributes to non‐linear coupling for a flow inside a straight channel. In this case, it is possible to implement a spectral representation in the depthwise direction for the velocity and stress. The evolution of the flow field is obtained locally, but the front movement is captured only in the mean sense. The influence of inertia, elasticity and viscosity ratio is examined for pressure‐induced flow. The front appears to progress monotonically with time. However, the velocity and stress exhibit typically a strong overshoot upon inception, accompanied by a plug‐flow behaviour in the channel core. The flow intensity eventually diminishes with time, tending asymptotically to Poiseuille conditions. For highly elastic liquids the front movement becomes oscillatory, experiencing strong deceleration periodically. A multiple‐scale solution is obtained for fluids with no inertia and small elasticity. Comparison with the exact (numerical) solution indicates a wide range of validity for the analytical result. Copyright © 2004 John Wiley & Sons, Ltd. 相似文献
173.
本文运用信息保存法对低速二维的流动现象进行模拟,考察了低速条件下的有限平板绕流以及微槽道气体流动问题。研究表明:在对低速流动的模拟过程中,运用IP法在能够获得较好的结果的同时,具有比DSMC方法更高的计算效率。 相似文献
174.
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176.
The effect of the temperature factor, that is, the ratio of the body temperature to the freestream stagnation temperature, on the structure of the separated flow formed in the presence of a concave corner in a supersonic stream is studied. The strong influence of the temperature factor on the separation zone length and the flow-generated aerodynamic characteristics is established. It is shown that for fairly large deflection angles this flow cannot be described by free interaction, or triple deck, theory. 相似文献
177.
张建玲 《科技情报开发与经济》2007,17(20):293-293
简要介绍了3种不同的流水施工组织方法,并阐述了流水施工的经济效益,指出流水施工的组织方法是建设项目早日投产的首要条件。 相似文献
178.
对理想流体一维绝热稳定流动作了讨论.对一般理想流体(可压缩或不可压缩),用两种方法推出了能量方程.在此基础上,讨论了流动可逆性及不同流体性质对流动参数的影响. 相似文献
179.
付强 《西南民族学院学报(自然科学版)》2007,33(5):1163-1166
成纤材料的可纺性是合成新的成纤材料或是度量现有材料的成纤条件的关键性参数,拉伸率是衡量材料的可纺性的依据,本文就纤维纺丝拉伸的类型和特点进行分析研究,其结果与材料本构方程联立求解,可分析求解高分子材料拉伸流动中的流动参数. 相似文献
180.
针对目前的流量检测仪在缺乏供电的场所无法对流量进行连续监测的问题,提出一种以零功耗磁敏传感器为信号采集前端,以低功耗MSP430F413单片机为控制器的流量检测仪的设计方法.介绍其工作原理和关键芯片的选型、硬件电路和软件流程.用此方法设计的流量检测仪功耗只有μA级,采用普通锂电池供电,非常适合在没有通电的地方使用. 相似文献