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微重力下容器圆形倒角处的毛细驱动流
引用本文:侯瑞,段俐,胡良,康琦.微重力下容器圆形倒角处的毛细驱动流[J].实验流体力学,2008,22(2).
作者姓名:侯瑞  段俐  胡良  康琦
作者单位:中国科学院力学研究所国家微重力实验室,北京,100190
摘    要:空间探索计划的需求对空间流体管理技术提出了新的挑战.流体管理设备的内角是主要的流体传输"管道",因此研究微重力下容器内角处的毛细驱动流具有重要的意义.由于设计和制造等原因,完美的尖角并不常见,而是带有一定圆角过渡的内角.笔者设计不同的带有圆形过渡内角的容器,选用10cSt硅油为实验流体介质,通过一系列的落塔实验,研究了容器内角处不同的圆角半径对毛细驱动流的影响,并分析得到了有价值的实验规律.

关 键 词:微重力  流体管理  圆形内角  毛细驱动流

Capillary-driven flows along rounded interior corners in microgravity
HOU Rui,DUAN Li,HU Liang,KANG Qi.Capillary-driven flows along rounded interior corners in microgravity[J].Experiments and Measur in Fluid Mechanics,2008,22(2).
Authors:HOU Rui  DUAN Li  HU Liang  KANG Qi
Abstract:Fluid management in space is facing new challenges because of the requirements of space exploration.It is crucial to investigate the capillary driven flows in vessel's interior corners as the fluid management devices' corners provide the main conduits for the transfer of fluids.In many instances,the interior corners are not perfectly sharp but rather possess a degree of roundedness due to the design or fabrication.In this work,different containers with rounded interior corners are designed and 10cSt silicone oil is used for a series of drop tower experiments.Based on the investigation into the impacts of the varying radius on the capillary driven flows,valuable experimental rules are found.
Keywords:microgravity  fluid management  rounded interior corner  capillary driven flows
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