博彩公司-真人在线博彩公司大全_百家乐园首选去澳_全讯网赢足一世 (中国)·官方网站

網站頁面已加載完成

由于您當前的瀏覽器版本過低,存在安全隱患。建議您盡快更新,以便獲取更好的體驗。推薦使用最新版Chrome、Firefox、Opera、Edge

Chrome

Firefox

Opera

Edge

ENG

當前位置: 首頁 · 學術交流 · 正文

學術交流

【學術報告】終極穩定的水下超疏水狀態(Ultimate Stable Underwater Superhydrophobic State)報告會通知

發布時間:2017年11月20日 來源: 點擊數:

報告人:呂鵬宇

報告題目:終極穩定的水下超疏水狀態(Ultimate Stable Underwater Superhydrophobic State)

邀請人:胡海豹 教授

報告時間:11月21日上午10:30-11:30

報告地點:航海學院201會議室

報告簡介:Superhydrophobicity of underwater structured surfaces is crucial to their functionalities like drag reduction, where a large area fraction of liquid-gas interfaces in the pinnedCassie-Baxter stateis required. However, various factors, such as pressurization, air diffusion, and liquid flow, will cause the instability of liquid-gas interfaces, leading to either wetting transition to the fully wetted Wenzel state or protrusion of bubbles into the liquid, which significantly influences the underwater performance. In the current work, stability of liquid-gas interfaces is investigated and various wetting states are directly observed and measured by confocal microscopy. The metastable state dynamically evolves owing to the air diffusion, which is extensively quantified under different ambient pressure conditions. A similarity law along with a characteristic time scale is derived which governs the lifetime of the air pockets. Air exchange between air pockets and surrounding water is therefore proved to be significant to the stability of liquid-gas interfaces. We then theoretically demonstrate and experimentally achieve an ultimate stable state on underwater superhydrophobic surfaces with arbitrary rough structures through the synergy of mechanical balance and chemical diffusion equilibrium across the interfaces. The equilibrium morphology of the meniscus can be tuned by adjusting the dissolved gas saturation degree under a given liquid pressure. The current results provide a further understanding of long-term stability of underwater superhydrophobicityand also promote their functionalities in practical applications.

報告人簡介:呂鵬宇,男,2015年在北京大學工學院力學與工程科學系獲得固體力學博士學位,2015年至2017年在荷蘭屯特大學流體物理課題組進行博士后研究?,F任北京大學工學院、北京大學工程科學與新興技術高精尖創新中心助理研究員。主要從事流固耦合界面力學的研究,包括微結構表面浸潤狀態與浸潤轉變、氣泡形貌演化、流體界面滑移特性、液滴蒸發溶解行為等研究方向,在《Physical Review Letters》、《Physics of Fluids》、《力學進展》等國內外主流期刊上發表SCI論文18篇(ESI高被引論文1篇),他人SCI引用140多次,國際專利1項,國家實用新型專利2項,2015年獲得北京大學優秀博士學位論文榮譽。

博乐百家乐游戏| 防伪百家乐官网筹码币套装| 998棋牌游戏中心| 澳门档百家乐官网的玩法技巧和规则| 百家乐对子计算方法| 在线体育投注| 百家乐投注网中国| 皇冠网都市小说| 网络百家乐的破解| 百家乐官网手机投注平台| 百家乐网上真钱娱乐场开户注册 | 百家乐官网赌博怎么玩| 百家乐庄的概率| 大发888赌博网站| 多台百家乐官网的玩法技巧和规则 | 赌场百家乐玩法介绍| 筹码币百家乐官网麻将| sp全讯网新2| 百家乐官网庄闲排列| 石林| 凱旋门百家乐官网的玩法技巧和规则| 大发888充钱| 波音百家乐现金网| 百家乐官网软件编辑原理| 威尼斯人娱乐城真人游戏| 君怡百家乐官网的玩法技巧和规则| 皇冠线上开户| 百家乐必赢法冯耘| 捷豹百家乐官网娱乐城| 保定市| bet365会员注册| 网上赌百家乐有假| 乐百家乐官网彩娱乐城| ewin棋牌官网| 百家乐官网博娱乐赌百家乐官网的玩法技巧和规则 | 威尼斯人娱乐城游戏| 百家乐怎样算大小| 百家乐官网如何捕捉长龙| 百家乐官网网上投注文章| 龙博娱乐城| 大发888九州娱乐城|