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Lattice Boltzmann modeling of water-like fluids

机译:水样流体的格子Boltzmann建模

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We review recent advances on the mesoscopic modeling of water-like fluids,based on the lattice Boltzmann (LB) methodology.The main idea is to enrich the basic LB (hydro)-dynamics with angular degrees of freedom responding to suitable directional potentials between water-like molecules.The model is shown to reproduce some microscopic features of liquid water, such as an average number of hydrogen bonds per molecules (HBs) between $3$ and $4$, as well as a qualitatively correctstatistics of the hydrogen bond angle as a function of the temperature.Future developments, based on the coupling the present water-like LB model with the dynamics of suspended bodies,such as biopolymers, may open new angles of attack to the simulation of complex biofluidic problems, such as protein folding and aggregation, and the motion of large biomolecules in complex cellular environments.
机译:我们回顾了基于格子Boltzmann(LB)方法的类水流体介观建模的最新进展,主要思想是通过响应水之间合适的方向势的自由角来丰富基本的LB(水)动力学。该模型显示出液态水的一些微观特征,例如每分子($ 3 $和$ 4 $之间)的平均氢键数(HBs),以及氢键角定性校正为基于当前的水样LB模型与诸如生物聚合物之类的悬浮体动力学的耦合,未来的发展可能为复杂的生物流体问题(如蛋白质折叠和聚集)的模拟打开新的攻势,以及大型生物分子在复杂细胞环境中的运动。

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