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Development of models correlating vibration excitation forces to dynamic characteristics of two-phase flow in a tube bundle

机译:模型的开发与管束中两相流动态特性的电模型

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Recent experiments revealed significant quasi-periodic forces in both the drag and lift directions in a rotated triangular tube bundle subjected to two-phase cross-flow. The quasi-periodic drag forces were found to be related to the momentum flux fluctuations in the main flow path between the cylinders. The quasi-periodic lift forces, on the other hand, are mostly correlated to the oscillation in the wake of the cylinders. In this paper, we develop semi-analytical models for correlating vibration excitation forces to dynamic characteristics of two-phase flow in a rotated triangular tube bundle for a better understanding of the nature of vibration excitation forces. The relationships between the lift or drag forces and the dynamic characteristics of two-phase flow are established through fluid mechanics momentum equations. A model has been developed to correlate the void fraction fluctuation in the main flow path and the dynamic drag forces. A second model has been developed for correlating the oscillation in the wake of the cylinders and the dynamic lift forces. Although still preliminary, each model can predict the corresponding forces relatively well. (C) 2008 Elsevier Ltd. All rights reserved.
机译:最近的实验揭示了在经受两相交叉流动的旋转三角形管束中的阻力和提升方向上的显着准周期性。发现准周期性的阻力力与气缸之间的主流路径中的动量助熔力有关。另一方面,准周期性升力大多数与气缸尾之后的振荡相关。在本文中,我们开发了用于将振动激发力的半分析模型与旋转三角管束中的两相流的动态特性相关,以便更好地理解振动激发力的性质。通过流体力学动量方程建立了提升或阻力与两相流的动态特性之间的关系。已经开发了一种模型以将主流路径和动态阻力力的空隙分数波动相关联。已经开发了第二种模型,用于在汽缸和动态升力之后与振荡相关联。虽然仍然初步,但是每个模型都可以相对良好地预测相应的力。 (c)2008年elestvier有限公司保留所有权利。

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