arrow
返回

A streamlining method for ejector nozzle profile optimization based on polynomial function

delete2023-01-01
delete14
PRE
AI
X
Xiaojing Ma
W
Wenxu Sun
马思乐 封面图
马思乐 (Sile Ma)
H
Hailun Zhang
Y
Yuanmin Zhang
C
Changchao Liu
贾磊 (Lei Jia)
H
Haoyuan Xue *
DOI:10.1016/j.applthermaleng.2022.119380delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
In this study, ejector performance was optimized by streamlining the primary nozzle profile using polynomial functions. Thirteen streamline nozzle profiles with different initial and exit expansion half-angles which deter-mined by quadratic and cubic functions were established, and their performance are discussed. The results indicate that the nozzle profiles designed by cubic function have the best performance than quadratic function. To improve the effective working range, the ejector should have an initial expansion half-angle that is as small as possible and an exit expansion half-angle that is as large as possible. To enhance the entrainment ratio, the ejector should have a constant exit expansion half-angle and a minimum initial expansion half-angle of 1 degrees. An excessive initial expansion half-angle caused a sealed Mach number contour inside the nozzle, which wasted energy to reduce the velocity and increase the static pressure, decreasing the working efficiency of the primary flow. In addition, the entrainment ratio significantly decreased with a large exit expansion half-angle (greater than 17 degrees).
Keyword:
Ejector
Nozzle optimization
Streamline nozzle
Computational fluid dynamics

期刊

Applied Thermal Engineering 封面图
Applied Thermal Engineering
IF:
6.9
论文数:
2.7W
被引数:
10.6W

机构

S
shandong university
学者数:
9.4W
论文数: 6.4W
被引数: 94
引用论文

引用论文

C-band external-cavity wavelength-tunable laser based on a liquid-crystal deflector
err2007-08-09
err0
PREAI
errP. Wang; L. K. Seah; V. M. Murukeshan; Z. X. Chao; X. J. Yin
err分享
err收藏
err分享
err收藏
err分享
err收藏
学者 查看更多内容