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雙吸泵作液力透平葉輪內(nèi)非定常流動(dòng)DMD分析
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甘肅省教育廳高校科研創(chuàng)新平臺(tái)重大培育項(xiàng)目(2024CXPT-09),、甘肅省自然科學(xué)基金項(xiàng)目(23JRRA750,、22JR5RA249)、甘肅省教育廳“雙一流”重點(diǎn)項(xiàng)目(GCJ2022-38)和甘肅省高等學(xué)校創(chuàng)新基金項(xiàng)目(2022A2022)


DMD Analysis of Unsteady Flow of Impeller in Double-suction Centrifugal Pump as Turbine
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    摘要:

    為了精確分析雙吸泵作液力透平葉輪內(nèi)的非定常流動(dòng)特性,,采用SST k-ω湍流模型在設(shè)計(jì)工況下進(jìn)行數(shù)值模擬,。對一個(gè)周期的非定常速度場進(jìn)行動(dòng)態(tài)模態(tài)分解(DMD),并結(jié)合Q準(zhǔn)則,,得到前4階主要模態(tài)及其相應(yīng)的時(shí)空信息,。分析結(jié)果表明:DMD方法將葉輪內(nèi)復(fù)雜的流場特征分解為動(dòng)靜干擾模態(tài)、基本模態(tài)和耗散模態(tài),。其中動(dòng)靜干擾模態(tài)占主導(dǎo)地位,,頻率為葉輪旋轉(zhuǎn)頻率,反映出葉輪內(nèi)流動(dòng)受靜止部件干擾的流動(dòng)特征,,渦結(jié)構(gòu)主要為點(diǎn)狀渦和不連續(xù)的管狀渦,;基本模態(tài)頻率為0Hz,反映出葉片流道幾何特征引起的穩(wěn)態(tài)流場特征,,渦結(jié)構(gòu)主要為連續(xù)的管狀渦,;3階及4階模態(tài)為耗散模態(tài),反映出葉輪內(nèi)流動(dòng)受靜止部件干擾,,在葉片上產(chǎn)生的流動(dòng)分離及不穩(wěn)定渦結(jié)構(gòu)脫落的特征,,以片狀渦和不連續(xù)的管狀渦為主。在特定頻率下DMD方法可以對葉輪流場結(jié)構(gòu)進(jìn)行分解,,能夠清楚地分析雙吸泵作液力透平葉輪內(nèi)復(fù)雜流場的非定常特性,。

    Abstract:

    In order to accurately analyze the unsteady flow characteristics in the impeller of a double-suction pump as a hydraulic turbine, the SST k-ω turbulence model was used for numerical simulation under design conditions. The dynamic mode decomposition (DMD) of a periodic unsteady velocity field was carried out, and the first four main modes and their corresponding spatio-temporal information were obtained by combining the Q criterion. The analysis results showed that the DMD method decomposed the complex flow field characteristics in the impeller into dynamic and static interference modes, basic modes and dissipative modes. Among them, the dynamic and static interference modes were dominant, and the frequency was the rotation frequency of the impeller, which reflected the flow characteristics of the flow in the impeller disturbed by the static components. The vortex structure was mainly point vortex and discontinuous tubular vortex. The basic modal frequency was zero, which reflected the steady-state flow field characteristics caused by the geometric characteristics of the blade flow channel. The vortex structure was mainly continuous tubular vortex. The third-order and fourth-order modes were dissipative modes, which reflected the characteristics of flow separation and unstable vortex structure shedding on the blade caused by the interference of static components in the impeller, mainly sheet vortex and discontinuous tubular vortex. The DMD method can decompose the flow field structure of the impeller at a specific frequency, and can clearly analyze the unsteady characteristics of the complex flow field in the impeller of the double-suction pump as a hydraulic turbine.

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苗森春,劉樂琪,王曉暉,楊軍虎,吳江波.雙吸泵作液力透平葉輪內(nèi)非定常流動(dòng)DMD分析[J].農(nóng)業(yè)機(jī)械學(xué)報(bào),2024,55(6):150-158. MIAO Senchun, LIU Leqi, WANG Xiaohui, YANG Junhu, WU Jiangbo. DMD Analysis of Unsteady Flow of Impeller in Double-suction Centrifugal Pump as Turbine[J]. Transactions of the Chinese Society for Agricultural Machinery,2024,55(6):150-158.

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  • 收稿日期:2023-11-28
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  • 在線發(fā)布日期: 2024-06-10
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