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Brownian dynamics simulations of flexible polymers with spring–spring repulsions

机译:柔性聚合物的布朗动力学模拟弹簧弹簧排斥

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摘要

We develop a method which incorporates spring–spring repulsions into Brownian dynamics simulations of flexible polymers. The distance of closest approach between two springs is computed, and a repulsive force is then applied based on this distance. Repulsive potentials of the exponential and power-law forms are considered. We demonstrate that our method is capable of accounting for excluded-volume effects in start-up of extensional flow. Equilibrium simulations indicate that spring-spring repulsions can be used to prevent the passage of two springs through each other, and thus maintain the topological integrity of polymer molecules. The method developed here is expected to be useful for simulating entanglement phenomena in both single and multichain systems. © 2001 American Institute of Physics.
机译:我们开发了一种将弹簧弹簧排斥融入柔性聚合物的褐色动力学模拟的方法。计算两个弹簧之间最近接近的距离,然后基于该距离施加排斥力。考虑指数和幂律形式的排斥潜力。我们展示我们的方法能够考虑在扩展流程启动中进行排除卷发。平衡模拟表明弹簧弹簧排斥可用于防止两个弹簧彼此通过,从而保持聚合物分子的拓扑完整性。这里开发的方法预计将用于模拟单个和多种系统中的缠结现象。 ©2001美国物理研究所。

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