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3D molecular dynamic simulation of thermodynamic equilibrium problem for heated nickel

机译:加热镍热力学均衡问题的3D分子动态仿真

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摘要

This work is devoted to molecular dynamic modeling of the thermal impact processes on the metal sample consisting of nickel atoms. For the solution of this problem, a continuous mathematical model on the basis of the classical Newton mechanics equations has been used; a numerical method based on the Verlet scheme has been chosen; a parallel algorithm has been offered, and its realization within the MPI and OpenMP technologies has been executed. By means of the developed parallel program, the investigation of thermodynamic equilibrium of nickel atoms system under the conditions of heating a sample to desired temperature has been executed. In numerical experiments both optimum parameters of calculation procedure and physical parameters of analyzed process have been defined. The obtained numerical results are well corresponding to known theoretical and experimental data.
机译:该工作致力于由镍原子组成的金属样品上的热冲击过程的分子动态建模。对于解决此问题的解决方案,使用了基于经典牛顿力学方程的连续数学模型;选择了一种基于法术方案的数值方法;已经提供了一种并行算法,并执行了MPI和OpenMP技术内的实现。通过开发的并行程序,已经执行了在将样品加热到所需温度的条件下对镍原子系统进行热力学平衡的研究。在数值实验中,定义了分析过程的计算过程和物理参数的最佳参数。获得的数值结果与已知的理论和实验数据很好。

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