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Lateral migration of dual droplet trains in a double spiral microchannel 被引量:1
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作者 ChunDong Xue XiaoDong Chen +1 位作者 Chao Liu GuoQing Hu 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2016年第7期52-61,共10页
Microfluidic droplets have emerged as novel platforms for chemical and biological applications. Manipulation of droplets has thus attracted increasing attention. Different from solid particles, deformable droplets can... Microfluidic droplets have emerged as novel platforms for chemical and biological applications. Manipulation of droplets has thus attracted increasing attention. Different from solid particles, deformable droplets cannot be efficiently controlled by inertia-driven approaches. Here, we report a study on the lateral migration of dual droplet trains in a double spiral microchannel at low Reynolds numbers. The dominant driving mechanism is elucidated as wall effect originated from the droplet deformation. Three types of migration modes are observed with varying Reynolds numbers and the size-dependent mode is intensively investigated. We obtain empirical formulas by relating the migration to Reynolds numbers and droplet sizes. The effect of droplet deformability on the migration and the detailed migration behavior along the double spiral channel are discussed. Numerical simulations are also performed and yielded in qualitative agreement with the experiments. could be a promising alternative to existing inertia-driven approaches bio-particles. This proposed low Re approach based on lateral migration especially concerning deformable entities and susceptible 展开更多
关键词 MICROFLUIDICS DROPLET migration double spiral microchannel
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Middle or low water pressure direct spiral double helix converging nozzle structure optimization and flow field analysis 被引量:1
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作者 蒋林 Wu Ruolin +5 位作者 Zhao Hui Mei Peng Zhang Qiang Zhu Jiangyang Xiao Jun Lei Bin 《High Technology Letters》 EI CAS 2015年第3期261-268,共8页
In order to solve the problem of using new nozzle is proposed in fire rescue robot. middle or low water pressure to form fine water mist, a Existing water mist nozzles are basically used for high pressure and in large... In order to solve the problem of using new nozzle is proposed in fire rescue robot. middle or low water pressure to form fine water mist, a Existing water mist nozzles are basically used for high pressure and in large size, complex structure and poor low pressure atomization effect in comparison with requirement of snake-like fire rescue robots. On the basis of comprehensive typical spray noz- zles, a direct spiral double helix converging nozzle (DSDHCN) is proposed, which has the advanta- ges of small volume, light weight, simple structure, and convenient installation. To make the spray nozzle have good performance, and meet the requirements of more efficient fire extinguishing, a nu- merical study is carried out to analyze the internal and external full flow field of nozzle. A gas-liquid two-phase flow is applied to simulate the external full flow field of nozzle with VOF model in fluent software. The simulation results show the real situation of water flow out of the atomization nozzle and the water jet trajectory. Some simulations about middle or low water pressure direct spiral double he- lix converging optimized nozzle have been done in 30bar pressure. The simulation results show that the optimized nozzle structure not only makes the spray droplets have a good cone angle, but also have a sufficient axial velocity,which proves the structure rationality of the proposed optimized nozzle. 展开更多
关键词 direct spiral double helix converging nozzle (DSDHCN) internal and external flow field analysis structure optimization water mist
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The Layout and Simulation of Logarithmic Spiral Double Curved Arch Dam Transverse Joints
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作者 DU Ting-na DU Qi-lu HUI Yuan 《Computer Aided Drafting,Design and Manufacturing》 2011年第1期8-12,共5页
Because of its good condition with mechanics, logarithmic spiral double curve arch bam has been widely used in the practical engineering. The introduction of a new method in how to divide transverse joint in arch dam ... Because of its good condition with mechanics, logarithmic spiral double curve arch bam has been widely used in the practical engineering. The introduction of a new method in how to divide transverse joint in arch dam will be given and the further research of its calculation has been done. The C++ is used in electronic procedure and the 3D simulation has been finished with AutoCAD, which will provide the object model for computer simulation of the arch dam and the division of finite element mesh. Meanwhile, this method in dividing the transverse joint in arch dam also can be taken as the calculated basis for the design and calculation of arch dam, construction lofting and the calculation of the work amount. 展开更多
关键词 the application of computer logarithmic spiral double curved arch dam transverse joints arched girder 3D modeling the design of C++ procedure
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A wind tunnel study on control methods for cable dry-galloping 被引量:1
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作者 Hung D. VO Hiroshi KATSUCHI +1 位作者 Hitoshi YAMADA Mayuko NISHIO 《Frontiers of Structural and Civil Engineering》 CSCD 2016年第1期72-80,共9页
The common vibration of cable caused by rain-wind combination has been known as most typical type and a lot kind of its countermeasures has been proposed for suppressing this phenomenon. Recently, stayed-cables were a... The common vibration of cable caused by rain-wind combination has been known as most typical type and a lot kind of its countermeasures has been proposed for suppressing this phenomenon. Recently, stayed-cables were also proved that they could be excited in dry state (without rain), which is called dry-galloping. Recently, its mechanisms have been explained by axial flow, Reynolds number and so on. To clarify the characteristics of this galloping, wind tunnel test of a cable model with various kinds of wind angle was conducted. Then, three types of countermeasure were examined to suppress dry- galloping of bridge cable. The tests confirmed that the occurrence of dry-galloping depends on relative wind attacked angles and onset reduced wind speed. Furthermore, single spiral wire, double spiral wire and circular ring were found to have high effectiveness in mitigating this galloping when those are installed properly. 展开更多
关键词 dry-galloping wind-relative angle single spiral wire double spiral wire circular rings
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