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Numerical Analysis of Kidney Stone Fragmentation by Short Pulse Impingement: Effect of Geometry

机译:短脉冲冲击的肾结石碎裂数值分析:几何效果

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To better understand the behavior of stresses generated inside a kidney stone by direct pulse impingement during extracorporeal shock wave lithotripsy (ESWL), numerical analyses are performed in this work. LS-DYNA, an explicit Finite Element code for non-linear dynamic analysis is employed to investigate the effect of stone geometry to the stress field evolution inside the stone when subjected to short pulse wave. Circular disks with parts removed from the front and the back are used to model the stones that assumed have already had initial fracture. The other variation of spherical geometry such as ellipse is also considered in the numerical calculation.
机译:为了更好地了解通过在体外冲击波型(ESWL)期间通过直接脉冲冲击在肾脏石内部产生的应力的行为,在这项工作中进行数值分析。 LS-DYNA,用于非线性动态分析的显式有限元码,用于研究石头几何形状对脉波短脉冲时石材内的应力场演变的影响。圆盘与前部和背部移除的零件用于模拟假定已经具有初始骨折的石头。在数值计算中也考虑了诸如椭圆之类的球形几何形状的其他变化。

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