A model of flow and surfactant transport in an oscillatory alveolus partially filled with liquid
نویسندگان
چکیده
The flow and transport in an alveolus are of fundamental importance to partial liquid ventilation, surfactant transport, pulmonary drug administration, cell-cell signaling pathways, and gene therapy. We model the system in which an alveolus is partially filled with liquid in the presence of surfactants. By assuming a circular interface due to sufficiently strong surface tension and small surfactant activity, we combine semianalytical and numerical techniques to solve the Stokes flow and the surfactant transport equations. In the absence of surfactants, there is no steady streaming because of reversibility of Stokes flow. The presence of surfactants, however, induces a nontrivial cycle-averaged surfactant concentration gradient along the interface that generates steady streaming. The steady streaming patterns se.g., number of vorticesd particularly depend on the ratio of inspiration to expiration periods sI :E ratiod and the sorption parameter K. For an insoluble surfactant, a single vortex is formed when the I :E ratio is either smaller or larger than 1:1, but the recirculations have opposite directions in the two cases. A soluble surfactant can lead to more complex flow patterns such as three vortices or saddle-point flow structures. The estimated unsteady velocity is 10−3 cm/s, and the corresponding Péclet number for transporting respiratory gas is Os1d. For a cell-cell signaling molecule such as surfactant-associated protein-A for regulating surfactant secretion, the Péclet number could be Os10d or higher. Convection is either comparable to or more dominant than diffusion in these processes. The estimated steady velocity ranges from 10−6 to 10−4 cm/s, depending on I :E and K, and the corresponding steady Péclet number is between 10−8 /Dm and 10 −6 /Dm sDm is the molecular diffusivity with units of cm2/sd. Therefore, for Dm ø10−8 cm2/s, the convective transport dominates. © 2005 American Institute of Physics. fDOI: 10.1063/1.1830487g
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Project 1: Computational Modeling of Flow and Surfactant Transport in an Alveolus Partially Filled with Liquid
I have four projects available in my research group. The projects are mainly supported by TUBITAK, TUBA through the young investigator award (GEBIP) and Koc University. All projects involve some sort of international collaborations as mentioned at the end of each project. Short descriptions of the available projects are provided below. For details of the project and research opportunities, plea...
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تاریخ انتشار 2005