年次大会
Online ISSN : 2424-2667
ISSN-L : 2424-2667
セッションID: W271002
会議情報
W271002 大規模計算向け流体・構造連成手法の開発と血栓シミュレーションへの適用([W27100]部門協議会直属分科会:高度物理刺激と生体応答に関する研究分科会(P-SCC12),環境工学部門,バイオエンジニアリング部門,流体工学部門,熱工学部門企画,高度物理刺激と生体応答)
杉山 和靖
著者情報
会議録・要旨集 フリー

詳細
抄録
A novel numerical method for solving fluid-structure interaction problems has been developed. A fixed-mesh approach is employed, and the basic equation set is solved in a finite-difference manner. The effectiveness of the simulation method is demonstrated. The methods has been extended to a multiscale simulator for the primary stage of thrombus formation as a result of a platelet adhesion to an injured vessel wall. The simulator treats continuum scale blood flows containing a large number of red blood cells (RBCs) and platelets, and also molecular scale ligand-receptor interactions by means of the stochastic Monte-Carlo method. The simulation results obtained using massively parallel computing on the K computer demonstrate the relevance of the RBC motion, which induces the fluctuating velocity of the surrounding liquid and causes the dispersed motion of the platelet, to the enhancement of the thrombus formation.
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© 2014 一般社団法人 日本機械学会
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