Table 2 The corresponding details of CG methane potential function.

From: Impact of complex boundary on the hydrodynamic properties of methane nanofluidic flow via non-equilibrium multiscale molecular dynamics simulation

State points

CG parameter

State points

CG parameter

\({\text{T}}\left( {\text{K}} \right)\)

\(\rho \left( {{\text{kg/m}}^{3} } \right)\)

\(\sigma_{{{\text{CG}}}} \;(\text{\AA})\)

\(\varepsilon_{{{\text{CG}}}} \;\left( {{{{\text{kJ}}} \mathord{\left/ {\vphantom {{{\text{kJ}}} {{\text{mol}}}}} \right. \kern-\nulldelimiterspace} {{\text{mol}}}}} \right)\)

\({\text{T}}\left( {\text{K}} \right)\)

\(\rho \left( {{\text{kg/m}}^{3} } \right)\)

\(\sigma_{{{\text{CG}}}} \;(\text{\AA})\)

\(\varepsilon_{{{\text{CG}}}} \;\left( {{{{\text{kJ}}} \mathord{\left/ {\vphantom {{{\text{kJ}}} {{\text{mol}}}}} \right. \kern-\nulldelimiterspace} {{\text{mol}}}}} \right)\)

\(100\)

\(439.02\)

\(3.605\)

\(1.377\)

\(150\)

\(358.19\)

\(\begin{array}{*{20}l} {3.662} \hfill \\ \end{array}\)

\(\begin{array}{*{20}l} {1.226} \hfill \\ \end{array}\)

\(110\)

\(424.97\)

\(3.611\)

\(1.434\)

\(160\)

\(336.59\)

\(3.667\)

\(1.221\)

\(120\)

\(410.13\)

\(\begin{array}{*{20}l} {3.625} \hfill \\ \end{array}\)

\(\begin{array}{*{20}l} {1.407} \hfill \\ \end{array}\)

\(170\)

\(310.77\)

\(3.678\)

\(1.185\)

\(130\)

\(394.29\)

\(3.636\)

\(1.329\)

\(180\)

\(276.58\)

\(\begin{array}{*{20}l} {3.691} \hfill \\ \end{array}\)

\(1.120\)

\(140\)

\(377.15\)

\(3.645\)

\(1.329\)

\(190\)

\(200.46\)

3.694

1.118