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不同葉片后掠角度下軸流泵葉頂區(qū)空化流場與性能研究
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國家自然科學(xué)基金聯(lián)合重點項目(U2106225)、江蘇省重點研發(fā)計劃項目(BE2021073),、江蘇省杰出青年基金項目(BK20211547)和2021年度江蘇省高校優(yōu)秀科技創(chuàng)新團隊項目(蘇教科[2021]1號)


Cavitation Flow Field in Tip Region and Performance of Axial Flow Pump under Different Blade Swept Angles
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    摘要:

    為研究軸流泵葉片后掠對葉頂區(qū)空化流場及性能的影響,,以南水北調(diào)工程TJ04-ZL-02編號葉輪縮放模型為原型葉輪,,將葉片重心積迭線圓周后掠得到后掠20°和后掠40°葉輪,?;贏NSYS CFX 軟件對全流場進行數(shù)值模擬,,對比分析原型葉輪與后掠葉輪流道內(nèi)壓力、空泡,、流線分布的變化,,并對不同空化條件下葉片后掠對葉頂區(qū)漩渦強度、渦量和速度場的影響進行分析,。研究表明:后掠葉輪臨界空化余量降低,,后掠葉片吸力面空化面積及空泡體積分?jǐn)?shù)均低于原型葉片。在空化工況下,,葉片后掠減小吸力面?zhèn)鹊蛪簠^(qū)域,,有效抑制葉頂區(qū)三角形空化云的發(fā)展。由于葉片后掠減小葉頂區(qū)壓差,,導(dǎo)致葉頂泄漏量減小,,TLV核心區(qū)漩渦強度和渦量隨后掠角度的增大而減小,隨著空化程度加劇,,TLV漩渦強度和渦量均變大,,葉頂區(qū)流場更加復(fù)雜紊亂。

    Abstract:

    In order to study the effect of blade swept back on the cavitation flow field in tip region and performance of axial flow pump, the swept back 20° and swept back 40° impeller were redesigned based on the scaled model of TJ04-ZL-02 impeller in South to North Water Diversion Project. The whole flow field was calculated based on ANSYS CFX, the changes of pressure, cavitation and streamline distribution in the passage of prototype impeller and swept back impeller were compared and analyzed, and the effects of blade swept back on vortex intensity, vorticity and velocity field in tip region under different cavitation conditions were analyzed. The results showed that the NPSHa of the swept back impeller was decreased, and the cavitation area and cavitation volume fraction of the suction surface of the swept back blade were lower than those of the prototype blade. The backward sweep of the blade reduced the low pressure area of the suction surface and effectively inhibited the development of triangular cavitation cloud in tip region. As the blade swept backward reduced the pressure difference in the tip area, the tip leakage was decreased, and the vortex intensity and vorticity in the TLV core area were decreased with the increase of the swept angle. With the aggravation of cavitation, the vortex intensity and vorticity of TLV was increased, and the flow field in the tip area became more complex and disordered. Axial flow pump had the advantages of simple structure, large flow rate and high efficiency, and it played an important role in flood control and drainage, large-scale water transfer. The blade swept back improved the cavitation performance of the pump and had great potential in improving the cavitation performance of the axial flow pump.

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葉曉琰,王朋,張德勝,沈熙,趙旭濤,孟慶輝.不同葉片后掠角度下軸流泵葉頂區(qū)空化流場與性能研究[J].農(nóng)業(yè)機械學(xué)報,2022,53(10):194-201. YE Xiaoyan, WANG Peng, ZHANG Desheng, SHEN Xi, ZHAO Xutao, MENG Qinghui. Cavitation Flow Field in Tip Region and Performance of Axial Flow Pump under Different Blade Swept Angles[J]. Transactions of the Chinese Society for Agricultural Machinery,2022,53(10):194-201.

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  • 收稿日期:2021-11-26
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  • 在線發(fā)布日期: 2022-02-12
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