太阳城集团app-澳门太阳城集团娱乐城注册送彩金28_澳门百家乐群代理_一速全讯网111565官方 (中国)·官方网站

學術信息

【航宇大講堂】Flow stability in viscoelastic pipe flows

發布時間:2021-06-15瀏覽次數:6320發布者:顏士軒來源:南京航空航天大學

報告題目:Flow stability in viscoelastic pipe flows

報告人:Prof. Mengqi Zhang (National University of Singapore)

時間:2021年6月22日(周二) 上午10:00-11:00

地點:流體樓(C12) 六樓會議室

主辦單位:機械結構力學及控制國家重點實驗室、航空學院、非定常空氣動力學與流動控制工信部重點實驗室、科協

報告內容摘要:

Recent studies indicate that viscoelastic (polymeric) pipe flows can be linearly unstable, in contrast to the linearly stable Newtonian pipe flows. This linear instability mechanism is surprising and has stimulated new interests to further study the flow stability/instability in viscoelastic pipe flows. In this talk, I will first present the state of the art of the research and then introduce our recent works.

The linear instability was found using a relatively simple constitutive model for the polymers, i.e., Oldroyd-B model. A more realistic model, FENE-P model, will be examined in this work and the transient energy growth of the linear modes will be depicted. It is found that an Orr mechanism (along with the critical-layer mechanism) is at play in the conformation tensor field, contributing to the total energy growth.

From a nonlinear point of view, the linear instability implies a possibility of supercritical bifurcation in viscoelastic pipe flows, again, in contrast to the subcritical Newtonian pipe flows. We applied a multiple-scale expansion method to study the bifurcation type in the viscoelastic pipe flows. It is found that the two bifurcation types both exist in this flow and a boundary between them is dictated by the polymer concentration (or viscosity ratio β). Our theoretical prediction of the bifurcation boundary in β is about 0.785 (below which, the flow is supercritical; vice versa), which is qualitatively close to the experimental observation β≈0.855. A scaling for the Landau coefficient has been found.

報告人簡介:

Dr. Mengqi Zhang is an assistant professor in the Department of Mechanics Engineering, National University of Singapore since 2018. He received his PhD in Université de Poitiers, France in 2016. His research interest includes numerical analysis and simulations of various flow problems, such as non-Newtonian flows and electrohydrodynamic flows. He is also interested in flow control and reduced-order modelling of complex flows, including machine-learning-aided flow manipulation. 


百家乐遥控牌靴| 金榜百家乐娱乐城| 新濠百家乐官网的玩法技巧和规则 | 自贡百家乐官网赌| 大发888boaicai| 太阳城网上投注| 百家乐官网书籍| 六合彩摇奖结果| 百家乐官网好不好| 兴和县| 玩百家乐官网最好方法| 百家乐社区| 百家乐官网网页游戏网址| 百家乐输了好多钱| 爱拼百家乐现金网| 大发888熊之舞怎么玩| 足球百家乐官网投注网出租 | 百家乐官网网站程序| 百家乐官网高手怎么下注| 网页百家乐官网游戏下载| 澳门百家乐真人斗地主| 法拉利百家乐的玩法技巧和规则| 属蛇做生意坐向| 爱赢娱乐城资讯网| 百家乐官网长t恤| 大发888娱乐场下载官方| 新百家乐官网的玩法技巧和规则 | 真人百家乐官网视频赌博| 大发888全球顶级游戏平台| 百家乐算牌方| 开心8百家乐官网现金网| 易胜博百家乐输| 百家乐视频游365| 香港六合彩号码| 真人百家乐软件博彩吧| 大发888扑克下载| 宝马会百家乐官网的玩法技巧和规则| 百家乐园选百利宫| 百家乐官网平注法攻略| 模拟百家乐下载| 百家乐官网的路子怎么|