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基于流固耦合效應(yīng)的梯級泵站輸水管道振動特性分析
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國家自然科學(xué)基金項目(51679091)和河南省高等學(xué)校青年骨干教師資助計劃項目(2012GGJS-101)


Analysis of Water Pipeline Vibration Characteristics in Cascade Pumping Station Based on Fluid-Solid Coupling Interaction
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    摘要:

    為解決管道結(jié)構(gòu)固有振動特性分析中選取高精度流固耦合模型的方法問題,,以景電工程中梯級泵站輸水管道為研究對象,運用附加質(zhì)量法和直接耦合法原理,,建立不同的流固耦合模型,,對其進(jìn)行固有模態(tài)特征提取,并將求解結(jié)果與SSI法模態(tài)辨識結(jié)果對比,。結(jié)果表明:直接耦合法模型的結(jié)果與SSI法辨識結(jié)果吻合得較好,,最大誤差為3.62%,同階次的計算精度均優(yōu)于附加質(zhì)量模型,,頻率間隔小,,彌補(bǔ)了附加質(zhì)量模型出現(xiàn)的模態(tài)缺失現(xiàn)象;直接耦合模型的計算結(jié)果在模擬階數(shù)和精度方面都優(yōu)于附加質(zhì)量模型,,能較好地反映管道結(jié)構(gòu)的固有振動特性,,可在復(fù)雜管系結(jié)構(gòu)的動力特性分析中應(yīng)用。

    Abstract:

    As the basic carrier of long-distance inter-basin water conveyance project of pressure piping, pressure piping is an important part of agricultural engineering and water conservancy projects, which plays an important role in solving the uneven spacetime distribution of water resources. The vibration during the operation is the critical problem in the design and safety evaluation of water pipeline. In order to solve the problem of how to improve the precision of the FSI (fluid-solid interaction) model in the natural vibration characteristics analysis of the piping, two different FSI models of a piping in cascade pumping station of Jingdian Project were built, by using the additional mass method and direct coupling method respectively. Then the modal characteristics of two FSI models which were obtained in the natural vibration characteristics analysis were compared with the modal characteristics of the prototype piping identified by stochastic subspace identification (SSI) method. The comparison results show that the simulation results of the model by using direct coupling method were in good agreement with the results identified by SSI method, and the maximum error was 3.62%. In the comparison of calculation accuracy of the same order, the model by using direct coupling method outperforms the model by using additional mass method, making up for the lack of the modes that the additional mass model can not work out. The results show that FSI affects the piping system modal frequency seriously and the model by using direct coupling method is superior to the additional mass model in terms of the order number and precision of the simulation, reflecting the real natural vibration characteristics of liquid conveying piping. This method can be used in the analysis of the dynamic characteristics of complicated pipe systems.

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張建偉,王濤,曹克磊,江琦,喬鵬帥,許新勇.基于流固耦合效應(yīng)的梯級泵站輸水管道振動特性分析[J].農(nóng)業(yè)機(jī)械學(xué)報,2017,48(3):134-140. ZHANG Jianwei, WANG Tao, CAO Kelei, JIANG Qi, QIAO Pengshuai, XU Xinyong. Analysis of Water Pipeline Vibration Characteristics in Cascade Pumping Station Based on Fluid-Solid Coupling Interaction[J]. Transactions of the Chinese Society for Agricultural Machinery,2017,48(3):134-140.

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  • 收稿日期:2016-07-14
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  • 在線發(fā)布日期: 2017-03-10
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