Find the stiochiometric fuel-to-air ratio, F/Ast, for this fuel mixture. a) b) For an equivalence ratio of 0.9, find the actual combustion reaction. Express the reaction in terms of 1 kmol of fuel (total). Find the flow rate (g/s) of water from the products for a flow rate of 2 g/s of this c) blended fuel into a combustor.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A fuel can be created by blending two single component fuels. For example, consider a mix
of 15% (by volume) of octane (C3H18) and 85% (by volume) of ethanol (C2H6O).
Find the stiochiometric fuel-to-air ratio, F/Ast, for this fuel mixture.
a)
For an equivalence ratio of 0.9, find the actual combustion reaction. Express the
b)
reaction in terms of 1 kmol of fuel (total).
c)
Find the flow rate (g/s) of water from the products for a flow rate of 2 g/s of this
blended fuel into a combustor.
Transcribed Image Text:A fuel can be created by blending two single component fuels. For example, consider a mix of 15% (by volume) of octane (C3H18) and 85% (by volume) of ethanol (C2H6O). Find the stiochiometric fuel-to-air ratio, F/Ast, for this fuel mixture. a) For an equivalence ratio of 0.9, find the actual combustion reaction. Express the b) reaction in terms of 1 kmol of fuel (total). c) Find the flow rate (g/s) of water from the products for a flow rate of 2 g/s of this blended fuel into a combustor.
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