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China, for example, is still struggling to tap its coal bed methane and other sources of gas, and a viable large-scale business model for gas doesn't fully exist in that country.
This paper presents an extensible object model for gas turbine engine performance simulation.
This model uses statistical methods to generate a mathematical model for gas lift operation.
The analytical model for gas diffusivity of porous nanofibers is given in Section 3.
The PIC-MCC model for gas discharge within narrow channel is described in detail in ref. [20, 24, 25].
In this paper a new soot formation model for gas turbine combustor simulations is presented.
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The analytical model for gas-drilling presented by Li et al. (2015) was used for comparison.
In this paper a detailed hydrodynamic model for gas-liquid two-phase flow will be presented.
A first-principles model for gas-fluidized bed based on the so-called "two-fluid model" (TFM) has been developed.
A kinetic model for gas-phase hydrodynamics capable of describing both the bubbly and churn turbulent flow regimes is proposed.
The hydrodynamic and kinetic models are combined in order to develop a comprehensive model for gas-phase polyethylene reactor.
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