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  • 陈伟雄

  • 教授

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所在单位: 能源与动力工程学院

学历: 博士研究生毕业

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学位: 博士

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Impact of operational and geometrical factors on ejector performance with a bypass

发布时间:2025-04-30
点击次数:
发布时间:
2025-04-30
论文名称:
Impact of operational and geometrical factors on ejector performance with a bypass
发表刊物:
Applied Thermal Engineering.
摘要:
The mechanical energy loss during the mixing process and the momentum waste in the diffuser are the
main reasons for the relative low entrainment ratio. In the present study, the ejector with bypass is adopted
to utilize the momentum in the diffuser, hoping to increase the entrainment ratio. The influence of operational and bypass geometrical factors on the entrained capacity is analyzed through CFD method. The
results show that there is always an optimal location (around the place where the lowest pressure is)
for the maximum entrainment ratio, and it moves downstream as the motive or induced pressure increases. Meanwhile, the increment enlarges as the motive pressure increases, and the improvement would
enlarge from 10.7% to 32.8% when the motive pressure increases from 0.3 MPa to 0.4 MPa. Moreover, it
is still an effective method to improve ejector performance by enlarging bypass inlet area when the bypass
is installed in the optimal location. The same conclusion could be drawn when the inclination angle decreases, especially when the motive pressure is greater than the design value. Compared with the ejector
without bypass, the maximum improvement could be high up to 48.7% while the inlet area is 4 mm × 8 mm
and angle is 15°.
合写作者:
Chen WX, Chen HQ, Shi CY, et al.
卷号:
2016, 99:
页面范围:
476-484.
是否译文:
发表时间:
2016-05-02