多孔孔板水力空化可视化与数值模拟
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国家自然科学基金项目(51176066、51276084)


Visualization and Numerical Simulation of Hydrodynamic Cavitation in Multi-hole Orifice Plate
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    摘要:

    基于自行搭建的多孔孔板空化反应装置,采用高速数码摄影和长工作距离显微成像技术,对多孔孔板中心孔内和孔板末下游进行空化特性试验研究,并分析了入口压力、空化数等参数对孔板水力空化的影响。试验结果显示:随着入口压力升高,孔内空化数不断下降且开始产生空化。孔板内和孔板下游都有空化区存在,且孔内空化对下游空化区影响大。数值模拟结果显示孔内空化与试验相符合,且下游空化区的产生是由孔内空化云脱落至下游漩涡区引起的。

    Abstract:

    The multi-hole orifice plate is a simple hydrodynamic device which can be used for intensification of liquid-liquid heterogeneous micromixing for preparing biodiesel or emulsified diesel. A flow visualization experiment system with transparent hydrodynamic cavitation reactor was set up to investigate the cavitation in the orifice plate and the outlet of the orifice plate. The effects of upstream pressure and cavitation number on the change of hydrodynamic cavitation were investigated. As the cavitation in orifice plates is transient, the numerical simulation was combined to give a more detailed flow insight and predict the cavitation inception and development. SST and LES models were used to simulate the cavitating flow in orifice plates. The experimental results showed that with the increase of upstream pressure the cavitation incepted in the orifice plate, and the discharge coefficient increased at first. In the next stage, cavitation extended to the outlet of the testing orifice plate with the decrease of discharge coefficient which was caused by cavitation choking flow. Also from the experimental images, it was concluded that some cavity bubbles merged into large-scale bubbles and existed in the downstream region of the orifice plate which seemed to cause the choking flow. Compared the numerical simulation results with the experimental results measured by high speed camera, it was found that SST model can predict the average length of cavitation but it can hardly simulate the transient cavitating flow. LES model can well predict the cloud cavitation and the re-entrant jet which is central to the process of cloud cavitation shedding. The results also showed that with the development and collapse of cloud cavitation, the length of cavity changed periodically. In addition, the detatils of the re-entrant jet were shown in LES simulation.

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何志霞,陈驭航,纪长浩.多孔孔板水力空化可视化与数值模拟[J].农业机械学报,2016,47(2):396-401. He Zhixia, Chen Yuhang, Ji Changhao. Visualization and Numerical Simulation of Hydrodynamic Cavitation in Multi-hole Orifice Plate[J]. Transactions of the Chinese Society for Agricultural Machinery,2016,47(2):396-401.

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  • 收稿日期:2015-09-02
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  • 在线发布日期: 2016-02-25
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