Suppr超能文献

液桥破裂的蒙特卡罗模拟:在肺生理学中的应用。

Monte Carlo simulation of liquid bridge rupture: application to lung physiology.

作者信息

Alencar Adriano M, Wolfe Elie, Buldyrev Sergey V

机构信息

Harvard School of Public Health, Harvard University, Boston, MA 02115, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Aug;74(2 Pt 2):026311. doi: 10.1103/PhysRevE.74.026311. Epub 2006 Aug 31.

Abstract

In the course of certain lung diseases, the surface properties and the amount of fluids coating the airways changes and liquid bridges may form in the small airways blocking the flow of air, impairing gas exchange. During inhalation, these liquid bridges may rupture due to mechanical instability and emit a discrete sound event called pulmonary crackle, which can be heard using a simple stethoscope. We hypothesize that this sound is a result of the acoustical release of energy that had been stored in the surface of liquid bridges prior to its rupture. We develop a lattice gas model capable of describing these phenomena. As a step toward modeling this process, we address a simpler but related problem, that of a liquid bridge between two planar surfaces. This problem has been analytically solved and we use this solution as a validation of the lattice gas model of the liquid bridge rupture. Specifically, we determine the surface free energy and critical stability conditions in a system containing a liquid bridge of volume Omega formed between two parallel planes, separated by a distance 2h, with a contact angle Theta using both Monte Carlo simulation of a lattice gas model and variational calculus based on minimization of the surface area with the volume and the contact angle constraints. In order to simulate systems with different contact angles, we vary the parameters between the constitutive elements of the lattice gas. We numerically and analytically determine the phase diagram of the system as a function of the dimensionless parameters hOmega(-1/3) and Theta. The regions of this phase diagram correspond to the mechanical stability and thermodynamical stability of the liquid bridge. We also determine the conditions for the symmetrical versus asymmetrical rupture of the bridge. We numerically and analytically compute the release of free energy during rupture. The simulation results are in agreement with the analytical solution. Furthermore, we discuss the results in connection to the rupture of similar bridges that exist in diseased lungs.

摘要

在某些肺部疾病的发展过程中,气道表面特性以及覆盖气道的液体量会发生变化,并且小气道中可能会形成液桥,阻碍空气流动,进而损害气体交换。在吸气过程中,这些液桥可能由于机械不稳定性而破裂,并发出一种离散的声音事件,称为肺部湿啰音,使用简单的听诊器就可以听到。我们假设这种声音是液桥破裂前存储在其表面的能量的声学释放的结果。我们开发了一种能够描述这些现象的格子气模型。作为对该过程建模的第一步,我们解决一个更简单但相关的问题,即两个平面表面之间的液桥问题。这个问题已经得到解析解,我们将此解用作液桥破裂格子气模型的验证。具体而言,我们使用格子气模型的蒙特卡罗模拟和基于在体积和接触角约束下最小化表面积的变分法,来确定在一个系统中的表面自由能和临界稳定性条件,该系统包含一个体积为Ω的液桥,液桥形成于两个平行平面之间,两平面间距为2h,接触角为Θ。为了模拟具有不同接触角的系统,我们改变格子气本构元素之间的参数。我们通过数值和解析方法确定系统的相图,该相图是无量纲参数hΩ^(-1/3)和Θ的函数。此相图的区域对应于液桥的机械稳定性和热力学稳定性。我们还确定了液桥对称破裂与非对称破裂的条件。我们通过数值和解析方法计算破裂过程中的自由能释放。模拟结果与解析解一致。此外,我们结合患病肺部中存在的类似液桥的破裂来讨论这些结果。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验