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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Numerical simulation of the phase separation in binary lipid membrane under the effect of stationary shear flow.
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Numerical simulation of the phase separation in binary lipid membrane under the effect of stationary shear flow.

机译:稳态剪切流作用下二元脂质膜相分离的数值模拟。

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A numerical simulation of the phase separation in binary lipid membrane under the effect of stationary shear flow is performed. We numerically solved the modified two-dimensional time-dependent Ginzburg-Landau (TDGL) equations with an external velocity term, employing the CDS (i.e., Cell Dynamical System) technique. In the present simulation, stationary shear flows with different shear rates are taken into account. The evolution process of the phase separation is illustrated macroscopically via the snapshot figures and simulated scattering patterns at several typical moments. For each case, the growth exponents of the characteristic domain sizes in both directions parallel and perpendicular to the flow are studied, and the domain area as well. Also, the behavior of the excess viscosity has been investigated, which is a peculiar rheological indicator of such a membrane system with domain structures.
机译:进行了稳态剪切流作用下二元脂质膜相分离的数值模拟。我们使用CDS(即细胞动力学系统)技术用外部速度项对修正后的二维时变Ginzburg-Landau(TDGL)方程进行了数值求解。在当前的模拟中,考虑了具有不同剪切速率的静态剪切流。通过快照图和几个典型时刻的模拟散射模式宏观地说明了相分离的演化过程。对于每种情况,都研究了在平行于和垂直于流的两个方向上特征域大小的增长指数,以及域面积。而且,已经研究了过量粘度的行为,这是这种具有域结构的膜系统的独特流变指标。

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