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- W2800459840 abstract "As we know that in a low Reynolds number regime, the swimming strategies that are used in high Reynolds number swimming are inefficient because of the dominating viscous forces. Therefore, micro-swimmers have developed different moving strategies that have fruitfully overcome and have exploited drag. Hydrodynamic interactions due to the objects in the vicinity are also one of the ingredients that can make a micro-swimmer motile. To show the importance of such kind of hydrodynamic interactions, here we investigate a 2-D scallop near no-slip boundaries in a viscous fluid using bead spring model together with multi-particle collision dynamics. Here, we show that if we place a scallop near a wall, it gets rotated and the direction of rotation depends upon the orientation of the scallop as expected. Instead of one wall, if we place the scallop between two closely spaced walls, initially it rotates and then slowly starts moving in backward direction due to the hydrodynamic interaction with the walls. Then we show that how the speed of the scallop is affected as we change the width of the channel. Our results can endue important guidance in the construction of robotic micro-swimmers." @default.
- W2800459840 created "2018-05-17" @default.
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- W2800459840 date "2018-01-01" @default.
- W2800459840 modified "2023-09-23" @default.
- W2800459840 title "Non self-propelled swimmer in a confined viscous fluid" @default.
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- W2800459840 doi "https://doi.org/10.1063/1.5033265" @default.
- W2800459840 hasPublicationYear "2018" @default.
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