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The Onset of Flow-induced Vibrations in a Square Tube Array subjected to Cross-Flow

机译:横流作用下方管阵列中流致振动的发生

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The need for accurate prediction of vibration and wear of heat exchangers in service has placed greater emphasis on improved modeling of the associated phenomenon of flow-induced vibrations. It was recognized that modeling of the complex dynamics of fluidelastic forces, that give rise to vibrations of tube bundles, requires a great deal of experimental insight. Accordingly, the prediction of the flow-induced vibration due to unsteady cross-flow can be greatly aided by semi-analytical models, in which some coefficients are determined experimentally. In this paper, the elastodynamic model of the tube array is formulated using the finite element approach, wherein each tube is modeled by a set of finite tube-elements. The interaction between tubes in the bundle is represented by fluidelastic coupling forces, which are defined in terms of the multi-degree-of-freedom elastodynamic behavior of each tube in the bundle. A laboratory test rig with an instrumented square bundle is constructed to measure the fluidelastic coefficients used to tune the developed dynamic model. The test rig admits two different test bundles; namely the inline-square and 45° rotated-square tube arrays. Measurements were conducted to identify the flow-induced dynamic coefficients. The developed scheme was utilized in predicting the onset of flow-induced vibrations, and results were examined in the light of TEMA predictions. The comparison demonstrated that TEMA guidelines are more conservative in the two configurations considered.
机译:对使用中的换热器的振动和磨损进行精确预测的需求已更加侧重于对流动引起的振动的相关现象进行改进的建模。人们已经认识到,引起管束振动的流体弹性力复杂动力学模型需要大量的实验研究。相应地,由于非稳态横流而引起的流动引起的振动的预测可以通过半分析模型极大地帮助,其中一些系数是通过实验确定的。在本文中,使用有限元方法建立了管阵列的弹性动力学模型,其中,每个管都通过一组有限的管元素进行建模。束中管之间的相互作用由流体弹性耦合力表示,该耦合力是根据束中每个管的多自由度弹性动力学行为定义的。建造了带有仪器测试的方捆的实验室测试台,以测量用于调整开发的动力学模型的流体弹性系数。该测试设备接受两个不同的测试包;即直列方管和45°旋转方管阵列。进行测量以识别流动引起的动态系数。开发的方案用于预测流动引起的振动的发生,并根据TEMA的预测检查结果。比较表明,在考虑的两种配置中,TEMA指南更为保守。

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