全文总字数:2071字
1. 毕业设计(论文)的内容和要求
内容:1.有心力问题的建模仿真2.单体、两体问题的建模仿真3.三体到多体问题的建模仿真4.碰撞、散射问题的建模仿真要求:1. 结合生产生活实例进行分析2. 有自己独立的思考和独到的见解
2. 实验内容和要求
实验内容:有心力问题的仿真实验单体、两体问题的仿真实验三体到多体问题的仿真实验碰撞、散射问题的仿真实验要求:自主编程实现
3. 参考文献
1. Benaroya H, Nagurka M, Han S. Mechanical vibration: analysis, uncertainties, and control[M]. CRC Press, 2017.2. Andersson C, kesson J, Fhrer C. Pyfmi: A python package for simulation of coupled dynamic models with the functional mock-up interface[M]. Lund: Centre for Mathematical Sciences, Lund University, 2016.3. Schweiger G, Larsson P O, Magnusson F, et al. District heating and cooling systemsFramework for Modelica-based simulation and dynamic optimization[J]. Energy, 2017, 137: 566-578.4. Landau R H, P M J, Bordeianu C C. Computational physics: Problem solving with Python[M]. John Wiley Sons, 2015.5. Tourigny D S, Muriel J C, Beber M E. dfba: Software for efficient simulation of dynamic flux-balance analysis models in Python[J]. Journal of Open Source Software, 2020, 5(52): 2342.6. Gowers R J, Linke M, Barnoud J, et al. MDAnalysis: a Python package for the rapid analysis of molecular dynamics simulations[R]. Los Alamos National Lab.(LANL), Los Alamos, NM (United States), 2019.7. Cummings J, Aivazis M, Samtaney R, et al. A virtual test facility for the simulation of dynamic response in materials[J]. The Journal of Supercomputing, 2002, 23(1): 39-50.8. Capocchi L, Santucci J F, Poggi B, et al. DEVSimPy: A collaborative python software for modeling and simulation of DEVS systems[C]//2011 IEEE 20th International Workshops on Enabling Technologies: Infrastructure for Collaborative Enterprises. IEEE, 2011: 170-175.9. Guttag J V. Introduction to computation and programming using Python[M]. Mit Press, 2013.10. Thomas D, Cerquaglia M L, Boman R, et al. CUPyDO-An integrated Python environment for coupled fluid-structure simulations[J]. Advances in Engineering Software, 2019, 128: 69-85.更多资料联系QQ275560060获取。
4. 毕业设计(论文)计划
2021年1月-2021年2月文献调研2021年2月-2021年3月建模仿真2021年3月-2021年4月结果分析及讨论并完成论文初稿
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