아르곤 기체에서 진행하는 충격파 연구를 위한 비평형 분자동역학 모의실험 개발 및 응용

Development and Application of a Nonequilibrium Molecular Dynamics Simulation Method to Study Shock Waves Propagating in Argon Gas

초록

A nonequilibrium molecular dynamics(NEMD) simulation method is developed and applied to study shock waves propagating through argon gas. In this simulation method, shock waves are generated by pushing a piston at a constant speed from one side of a simulation box filled with argon molecules. A linear relationship between piston speeds and shock speeds is observed. Thermodynamic properties including density, temperature, and pressure before and after the shock front are obtained from the simulations and compared with the well-known Rankine-Hugoniot equations based on ideal gases. The comparison shows an excellent agreement, indicating that this NEMD simulation method can be employed to investigate various physical properties of shock waves further.

키워드

Shock Wave(충격파)Shock Front(충격파 전선)Argon Gas(아르곤 기체)Nonequilibrium Molecular Dynamics Simulation(비평형 분자동역학 모의실험)Rankine-Hugoniot Relations(Rankine-Hugoniot 관계식)Light-Generating Device(섬광발생장치)
제목
아르곤 기체에서 진행하는 충격파 연구를 위한 비평형 분자동역학 모의실험 개발 및 응용
제목 (타언어)
Development and Application of a Nonequilibrium Molecular Dynamics Simulation Method to Study Shock Waves Propagating in Argon Gas
저자
황현석권찬호김홍래김성식박민규
발행일
2010-02
유형
Y
저널명
한국군사과학기술학회지
13
1
페이지
156 ~ 163