流体工学部門講演会講演論文集
Online ISSN : 2424-2896
セッションID: G614
会議情報
G614 オリフィスを通過する赤血球の運動と変形に関する数値解析(GS6-3 数値計算,一般セッション)
羽泉 喬平巽 和也勝本 洋一中部 主敬
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Three-dimensional numerical simulation of a red blood cell (RBC) flowing through a micro orifice is carried out in this paper. The characteristics of the RBC deformation and the pressure loss of the flow are discussed as the flow rate is varied for several conditions. Nonlinear spring network model and immersed boundary method are employed to solve the motion of the RBC membrane and its interaction with the flow. A peak was observed for the deformation index and the pressure loss at the entrance the orifice. In this region, the RBC deforms due to the elongational flow and produces drag forces to the flow together with the blockage effect. The pressure loss decreases markedly as the RBC passes the orifice, and then shows a second peak as the RBC flows out from the orifice. These distributions are attributed to the stress produced on the membrane owing to the membrane deformation, and the obstruction effect of the RBC on the orifice. As flow rate increases, the value of the normalized pressure loss at the first peak increases due to the difference of the deformation degree of the RBC.

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© 2012 一般社団法人 日本機械学会
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