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離心泵尾流-射流現(xiàn)象及粗糙度對其影響的分析
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國家自然科學(xué)基金資助項目(51109094),、江蘇省高校優(yōu)勢學(xué)科建設(shè)工程資助項目和航空科學(xué)基金資助項目(201328R3001)


Jet-wake Flow in the Channel of Impeller and the Effect of Surface Roughness on It
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    摘要:

    為減小葉輪內(nèi)的流動損失,結(jié)合計算流體力學(xué),、壁面函數(shù)法和等效沙粒粗糙度模型,研究了離心泵葉輪流道內(nèi)的尾流-射流現(xiàn)象及其受粗糙度的影響規(guī)律。對比試驗和數(shù)值模擬結(jié)果,,確保了所選計算方法和湍流模型(RNG k-ε模型)能夠準(zhǔn)確反映內(nèi)流場的變化,。研究表明:在葉輪流道內(nèi)相對速度W的分布存在明顯的尾流-射流規(guī)律,,且吸力邊后蓋板附近的邊界層厚度較大,尾流區(qū)主要在吸力邊后蓋板附近,;在葉輪出口處,,尾流區(qū)則出現(xiàn)在吸力邊的前蓋板附近。粗糙度對葉輪流道內(nèi)湍流的影響較大,,對壓力邊和吸力邊相對速度的影響相反,。粗糙度對內(nèi)部流動的影響存在一個過渡值,,當(dāng)粗糙度大于此值時,,粗糙度對流動的影響與粗糙度小于此值時相反。隨著粗糙度的增加,,葉輪出口處相對速度波動的振幅增加,。

    Abstract:

    For analyzing the flow pattern and reducing the hydraulic loss, the jet wake flow in the channel of impeller and how it is influenced by the surface roughness have been studied by coupling computational fluid mechanics and the sand-grain roughness method. The results of experiment and simulation were compared to insure the RNG k-εmodel could reflect the variation of the inner flow. The results indicate that the jet wake flow was obvious in the channel of impeller and the jet flow mainly appeared nearby the rear shroud of the suction side, while the jet flow appeared in the front shroud at the exit of impeller. The surface roughness of the impeller had a great influence on the relative velocity, and had the opposite influence on the pressure and suction side. The effect of surface roughness on the relative velocity become opposite when the value of roughness was higher than a transitional point. With the increase of the value of surface roughness, the amplitude of the relative velocity at the exit of impeller increased obviously, which was caused by the impeller-volute interaction.

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趙斌娟,王 瑜,陳匯龍,侯多華,仇 晶.離心泵尾流-射流現(xiàn)象及粗糙度對其影響的分析[J].農(nóng)業(yè)機械學(xué)報,2014,45(9):138-143. Zhao Binjuan, Wang Yu, Chen Huilong, Hou Duohua, Qiu Jing. Jet-wake Flow in the Channel of Impeller and the Effect of Surface Roughness on It[J]. Transactions of the Chinese Society for Agricultural Machinery,2014,45(9):138-143.

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  • 收稿日期:2014-02-28
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  • 在線發(fā)布日期: 2014-09-10
  • 出版日期: 2014-09-10
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