Numerical study for fluid-structure interaction of blood flow in TPLS

박동형 인공심폐기에서의 혈류의 고체-유체 상호작용에 대한 수치적 연구

  • 정기석 (금오공과대학교 대학원) ;
  • 성현찬 (금오공과대학교 대학원) ;
  • 심은보 (금오공과대학교 기계공학부) ;
  • 고형종 (금오공과대학교 기계공학부) ;
  • 민병구 (서울대학교 의공학과)
  • Published : 2002.08.01

Abstract

Hemodynamics of the TPLS(Twin Pulse Life Support System) is numerically investigated to delineate the possibility of hemolysis in blood. Computational method employing finite element algorithm is utilized to solve the blood flow of the sac squeezed by moving actuator. We assume that the blood flow interacts with the sac material which is activated by the rigid body motion of the actuator. Valve dynamics at the ends of the sac is simplified as on/off type motion. We compute the transient viscous flow in the two-dimensional geometry of the blood sac. Incompressible laminar flow is simulated on the assumption of Newtonian fluid. Blood velocity has a step gradient near the throat of the sac formed by the moving actuator. According to the decrease of the gap size of blood passage, the magnitude of shear stress in the blood is dramatically increased. Numerical solutions show that the maximum value of shear stress in the blood flow in TPLS is relatively smaller than that of the roller type ECLS.

Keywords