TY - JOUR
T1 - Experimental investigation on jet impingement heat transfer for micro-channel
AU - Zheng, Jie
AU - Zhu, Hui Ren
AU - Guo, Tao
AU - Meng, Tong
AU - Guo, Wen
AU - Su, Yun Liang
PY - 2015/1/1
Y1 - 2015/1/1
N2 - Experiments are conducted to investigate the flow and heat transfer characteristics of inner cooling channel with real engine sizes. The diameter of impingement holes and film holes are 0.3 mm, 0.4 mm and 0.5 mm, respectively. Ratios of the distance between the impingement plate and the target plate to the impingement hole diameter (H/D) are 2, 2.5 and 3.0, respectively. Hole pitch to diameter ratios (P/D) are 5 and 10, respectively. The Reynolds number varies from 1000 to 10000, Knudsen number is equal to the Knudsen number in real working condition of engine. The thermodynamic characteristics of micro-scale impingement channels with different geometry are studied. The results show that with the same Reynolds number, average heat transfer coefficient of channel increases as the hole diameter decreases, and it decreases as the magnitude of H/D or P/D increases, and the empirical correlation has been fitted.
AB - Experiments are conducted to investigate the flow and heat transfer characteristics of inner cooling channel with real engine sizes. The diameter of impingement holes and film holes are 0.3 mm, 0.4 mm and 0.5 mm, respectively. Ratios of the distance between the impingement plate and the target plate to the impingement hole diameter (H/D) are 2, 2.5 and 3.0, respectively. Hole pitch to diameter ratios (P/D) are 5 and 10, respectively. The Reynolds number varies from 1000 to 10000, Knudsen number is equal to the Knudsen number in real working condition of engine. The thermodynamic characteristics of micro-scale impingement channels with different geometry are studied. The results show that with the same Reynolds number, average heat transfer coefficient of channel increases as the hole diameter decreases, and it decreases as the magnitude of H/D or P/D increases, and the empirical correlation has been fitted.
KW - Heat transfer coefficients
KW - Impingement cooling
KW - Micro-scale
KW - Reynolds
UR - http://www.scopus.com/inward/record.url?scp=84922352526&partnerID=8YFLogxK
U2 - 10.13675/j.cnki.tjjs.2015.01.012
DO - 10.13675/j.cnki.tjjs.2015.01.012
M3 - 文章
AN - SCOPUS:84922352526
SN - 1001-4055
VL - 36
SP - 82
EP - 88
JO - Tuijin Jishu/Journal of Propulsion Technology
JF - Tuijin Jishu/Journal of Propulsion Technology
IS - 1
ER -