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首页> 外文期刊>Journal of Mechanical Science and Technology >Fluid-structure coupling effects on periodically transient flow of a single-blade sewage centrifugal pump
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Fluid-structure coupling effects on periodically transient flow of a single-blade sewage centrifugal pump

机译:流固耦合对单叶片污水离心泵周期性瞬态流动的影响

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摘要

A partitioned fluid-structure interaction (FSI) solving strategy that depends on problem characteristics is applied to quantitatively obtain the coupling effects of a fluid-structure system in a single-blade centrifugal pump on the unsteady flow. A two-way coupling method is employed to realize strong FSI effects in the calculation procedure. The successful impeller oscillation measurement using two proximity sensors validated the FSI simulation accuracy in a complicated and practical fluid-structure system having a rotating component. The results show that the hydrodynamic force deviation can be observed in the results for the coupled versus uncoupled cases. Additionally, the coupled unsteady pressure is larger than the uncoupled value for every monitoring point at every impeller rotation position. Comparison results for different monitoring points under an overload condition and partial-load condition display the same regularities. To some extent, this interaction mechanism would affect the accuracy and reliability of the unsteady flow and rotor deflection analysis.
机译:运用基于问题特征的分区流体-结构相互作用(FSI)解决策略,定量地获得了单叶片离心泵中流体-结构系统对非恒定流的耦合效应。在计算过程中,采用双向耦合方法来实现强大的FSI效果。使用两个接近传感器成功进行叶轮振荡测量,验证了FSI模拟精度在复杂且实用的具有旋转组件的流体结构系统中的准确性。结果表明,在耦合和非耦合情况下,可以观察到流体动力偏差。另外,在每个叶轮旋转位置的每个监控点,耦合的非稳态压力都大于耦合值。在过载和部分负载条件下,不同监视点的比较结果显示出相同的规律性。在某种程度上,这种相互作用机制会影响非定常流动和转子挠度分析的准确性和可靠性。

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