A parametric dependent study is crucial for the accurate determination of transport coefficients such as shear viscosity. In this study, we calculate the shear viscosity of extended simple point charge water using a transverse current auto-correlation function (TCAF) from equilibrium molecular dynamics (EMD) and the periodic perturbation method from non-equilibrium molecular dynamics (NEMD) simulations for varying coupling time and system sizes. Results show that the shear viscosity calculated using EMD simulations with different thermostats varies significantly with coupling times and system size. The use of Berendsen and velocity-rescale thermostats in NEMD simulations generates a significant drift from the target temperature and results in an inconsistent shear viscosity with coupling time and system size. The use of Nose-Hoover thermostat in NEMD simulations offers thermodynamic stability which results in a consistent shear viscosity for various coupling times and system sizes.
机构:
ZCCC Hongtu Transportat Construct Co Ltd, Hangzhou 310051, Peoples R ChinaZCCC Hongtu Transportat Construct Co Ltd, Hangzhou 310051, Peoples R China
Hu, Xiancheng
Huang, Xiaohan
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Zhejiang Univ, Coll Civil Engn & Architecture, Hangzhou 310058, Peoples R ChinaZCCC Hongtu Transportat Construct Co Ltd, Hangzhou 310051, Peoples R China
Huang, Xiaohan
Zhou, Yuanbin
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Zhejiang Univ, Coll Civil Engn & Architecture, Hangzhou 310058, Peoples R ChinaZCCC Hongtu Transportat Construct Co Ltd, Hangzhou 310051, Peoples R China
Zhou, Yuanbin
Zhang, Jiandong
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Zhejiang Univ, Coll Civil Engn & Architecture, Hangzhou 310058, Peoples R ChinaZCCC Hongtu Transportat Construct Co Ltd, Hangzhou 310051, Peoples R China
Zhang, Jiandong
Lu, Hongquan
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Quzhou Univ, Coll Civil Engn & Architecture, Quzhou 324000, Peoples R ChinaZCCC Hongtu Transportat Construct Co Ltd, Hangzhou 310051, Peoples R China