内燃机学报
內燃機學報
내연궤학보
TRANSACTIONS OF CSICE
2007年
3期
217-222
,共6页
杜青%郭津%孟艳玲%宋东先
杜青%郭津%孟豔玲%宋東先
두청%곽진%맹염령%송동선
环膜液体射流%不稳定性%非轴对称模式%轴对称模式
環膜液體射流%不穩定性%非軸對稱模式%軸對稱模式
배막액체사류%불은정성%비축대칭모식%축대칭모식
Annular liquid jet%Instability%Para-sinuous mode%Para-varicose mode
利用线性不稳定性理论研究了旋转气体介质对黏性环膜液体射流破碎的影响.研究结果表明,无论是轴对称模式还是非轴对称模式,由液体环膜内部气体介质旋转所产生的离心力是液体射流的失稳因素,有助于液体射流的破碎.另外,由液体环膜外部气体介质旋转所产生的离心力是液体射流的促稳因素,不利于液体射流的破碎.当相同强度的旋转同时存在于内部和外部气体介质中时,对于轴对称模式,内部气体介质的影响显著,而对于非轴对称模式,则外部气体介质的影响更为明显.通常情况下,非轴对称模式的扰动增长率强于轴对称模式的扰动增长率,因此会在环膜液体射流的破碎中占据主导地位.
利用線性不穩定性理論研究瞭鏇轉氣體介質對黏性環膜液體射流破碎的影響.研究結果錶明,無論是軸對稱模式還是非軸對稱模式,由液體環膜內部氣體介質鏇轉所產生的離心力是液體射流的失穩因素,有助于液體射流的破碎.另外,由液體環膜外部氣體介質鏇轉所產生的離心力是液體射流的促穩因素,不利于液體射流的破碎.噹相同彊度的鏇轉同時存在于內部和外部氣體介質中時,對于軸對稱模式,內部氣體介質的影響顯著,而對于非軸對稱模式,則外部氣體介質的影響更為明顯.通常情況下,非軸對稱模式的擾動增長率彊于軸對稱模式的擾動增長率,因此會在環膜液體射流的破碎中佔據主導地位.
이용선성불은정성이론연구료선전기체개질대점성배막액체사류파쇄적영향.연구결과표명,무론시축대칭모식환시비축대칭모식,유액체배막내부기체개질선전소산생적리심력시액체사류적실은인소,유조우액체사류적파쇄.령외,유액체배막외부기체개질선전소산생적리심력시액체사류적촉은인소,불리우액체사류적파쇄.당상동강도적선전동시존재우내부화외부기체개질중시,대우축대칭모식,내부기체개질적영향현저,이대우비축대칭모식,칙외부기체개질적영향경위명현.통상정황하,비축대칭모식적우동증장솔강우축대칭모식적우동증장솔,인차회재배막액체사류적파쇄중점거주도지위.
A temporal linear instability analysis on a viscous annular liquid jet subject to two gas streams with different velocities and swirls is presented in this paper, and the effect of swirls from the inner and outer gas streams on the instability of the annular liquid jet is studied numerically. The study shows that,for both para-varicose and para-sinuous modes, the centripetal force induced by the swirl in the inner gas stream is a destabilizing factor to the instability of the annular liquid jet. Meanwhile, the centripetal force arising from the swirl of the outer gas stream is a stabilizing factor to the jet. When swirls are existed in both inner and outer gas streams simultaneously, for para-sinuous mode disturbance, the effect of the inner gas swirl will dominate the breakup. In the contrary, for the para-varicose mode disturbance, the effect of the outer gas swirl will become a predominant factor. In general, the growth rate for the para-sinuous mode is much larger than the corresponding para-varicose mode under the same flowing condition. This implies that in real air-assist or air-blast atomization, the para-sinuous mode will dominate the breakup process of the annular liquid jet.