首页> 外文会议>ASME summer bioengineering conference;SBC2010 >PROPAGATION OF LIQUID PLUGS WITH YIELD STRESS IN HUMAN AIRWAYS
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PROPAGATION OF LIQUID PLUGS WITH YIELD STRESS IN HUMAN AIRWAYS

机译:液体胶体在人体呼吸道中的屈服应力的传播

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The airway closure due to the capillary instability [1] occurs in hing diseases such as asthma, cystic fibrosis, or emphysema. The reopening process involves with displacement of plugs constituted ftom mucus, a non-Newtonian fluid with a yield stress, in the airways. In this work the steady propagation of mucus plugs in a 2D channel is Studied numerically, assuming that the mucus is a Bingham fluid. The governing equations are solved by a mixed-discontinuous finite element formulation and the free surface is resolved with the method of spines. The constitutive equation for Bingham fluid is implemented through a regilarized constitutive equation. According to the numerical results, the yield stress behavior of the plug modifies the plug shape, the pattern of the streamlines and the distribution of stresses in the plug domain and along the walls in a significant way. The distribution along the walls is a major factor in studying cell injuries.
机译:由于毛细血管不稳定[1]而引起的气道关闭会发生在诸如哮喘,囊性纤维化或肺气肿之类的疾病中。重新开放过程涉及在气道中置换由粘液构成的栓塞,该粘液是具有屈服应力的非牛顿流体。在这项工作中,假设黏液是宾厄姆流体,则数值研究了黏液塞在二维通道中的稳定传播。控制方程通过混合-间断有限元公式求解,而自由表面通过脊方法求解。 Bingham流体的本构方程是通过规则化的本构方程实现的。根据数值结果,塞子的屈服应力行为以明显的方式改变了塞子的形状,流线型式以及塞子域内和沿壁的应力分布。沿壁的分布是研究细胞损伤的主要因素。

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