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5the correct b1 coefficient expression is given in [13].
The modified SE-CSP virial coefficient expression provides a convenient and efficient method for practical virial coefficient calculation without resorting to complicated molecular model design and integral calculation.
Continuous kinetics theories require the formulation of (1) a stoichiometric coefficient expression that shows how the products of scission are distributed, and (2) an expression for the rate coefficient indicating how the size of the cracking molecule affects the rate.
A temperature-dependent revision factor α(T) was introduced to the liquid fugacity coefficient expression derived from traditional isothermal integration, and the vapor pressure of pure liquids can be reproduced.
The modified SE-CSP second virial coefficient expression was extrapolated based on the virial coefficients experimental temperature, and the second virial coefficients obtained are in good agreement with the experimental data at a low temperature and the theoretical values at high temperature.
Based on the energy-minimization multi-scale (EMMS) model, a revised drag force coefficient expression was coupled with the two-fluid model (TFM) and the kinetic theory of granular method (KTGF) to investigate the hydrodynamic characteristics of the loop seal and standpipe in a CFB.
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In the Appendix, we give the coefficient expressions of amplitude equations emerged in Section 4.
Rate coefficient expressions as functions of T and P are reported in CHEMKIN format for future use in kinetic modeling.
A thermodynamic procedure is employed to each phase by applying activity coefficient expressions related to interaction parameters which are dependent on the pressure.
Based on a corresponding state equation, including three characteristic parameters, an extended parameter is introduced to describe the second virial coefficient expressions of main products of propellant gas.
Theoretical calculations show a similar behavior if one deals with an active cloud and utilizes mass transfer coefficient expressions from an inactive cloud.
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