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Visualising and controlling the flow in biomolecular systems at and between multiple scales: from atoms to hydrodynamics at different locations in time and space

机译:可视化和控制生物分子系统中多个尺度及其之间的流动:从原子到时空不同位置的流体动力学

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摘要

A novel framework for modelling biomolecular systems at multiple scales in space and time simultaneously is described. The atomistic molecular dynamics representation is smoothly connected with a statistical continuum hydrodynamics description. The system behaves correctly at the limits of pure molecular dynamics (hydrodynamics) and at the intermediate regimes when the atoms move partly as atomistic particles, and at the same time follow the hydrodynamic flows. The corresponding contributions are controlled by a parameter, which is defined as an arbitrary function of space and time, thus, allowing an effective separation of the atomistic 'core' and continuum 'environment'. To fill the scale gap between the atomistic and the continuum representations our special purpose computer for molecular dynamics, MDGRAPE-4, as well as GPU-based computing were used for developing the framework. These hardware developments also include interactive molecular dynamics simulations that allow intervention of the modelling through force-feedback devices.
机译:描述了在空间和时间的多个尺度上同时建模生物分子系统的新颖框架。原子分子动力学表示与统计连续流体力学描述平稳地联系在一起。该系统在纯分子动力学(流体动力学)的极限下以及在中间态下,当原子部分作为原子粒子运动时,并在遵循流体动力学流动时,系统的行为正确。相应的贡献由一个参数控制,该参数定义为空间和时间的任意函数,因此可以有效分离原子性“核心”和连续性“环境”。为了填补原子表示和连续表示之间的比例空白,我们使用了分子动力学专用计算机MDGRAPE-4和基于GPU的计算来开发框架。这些硬件开发还包括交互式分子动力学仿真,该仿真允许通过力反馈设备进行建模干预。

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