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Exact(45)
a Lean gas.
Interestingly, the rich gas performance exceeds the performance of lean gas in the 2nd scenario while the lean gas performance exceeds rich gas performance in the 1st scenario.
The rich gas is showing a good functionality for soaking period as compared with lean gas.
Lean gas and rich gas success requires less molar-diffusivity as compared with CO2.
Primary production of a gas-condensate reservoir followed by lean gas recycling is considered.
The reason causing that lean gas performance exceeds rich gas's is due to the difference in both of molecular weight and concentration gradient between lean gas and rich gas.
Similar(15)
Transitional drop breakage in lean gas-agitated liquid-liquid dispersions is described and a generalized correlation for predicting drop size distribution as a function of time is presented.
Furthermore, the incremental oil recovery due to lean gases, rich gases, and CO2 gas injection confirms the predicted flow regime.
Furthermore NOx emissions can be cut by firing lean gases considering their low adiabatic flame temperatures.
However, rich gases need long soaking periods, and lean gases need large volumes to be injected for more successful results.
Accordingly, the rich and lean gases have shown a better performance to enhance oil recovery in these tight formations.
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CEO of Professional Science Editing for Scientists @ prosciediting.com