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PhD Thesis - Energy Systems Research Unit - University of Strathclyde

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Is CHP<br />

required ?<br />

Yes<br />

Is ratio constant<br />

at varying loads ?<br />

No<br />

Is ratio to be<br />

estimated ?<br />

Is PL < Min ?<br />

No<br />

Is PL = 0 ?<br />

No<br />

Is PL = PC1 ?<br />

No<br />

Is PL = PC2 ?<br />

No<br />

Is PL = PC3 ?<br />

No<br />

Is PL = 100 % ?<br />

No<br />

Is PL < PC1 ?<br />

No<br />

Is PC1 < PL < PC2 ?<br />

No<br />

Is PC2 < PL < PC3 ?<br />

No<br />

No<br />

Yes<br />

Ratio = 0<br />

Ratio = R1 00<br />

Is fuel type<br />

Yes Yes<br />

liquid ?<br />

No No<br />

Ratios given at<br />

different<br />

percentage loads<br />

PC3 < PL < PC4<br />

Yes<br />

Yes<br />

Yes<br />

Yes<br />

Yes<br />

Yes<br />

Yes<br />

Yes<br />

Yes<br />

Rat io = 0<br />

PL = 0<br />

Power = 0<br />

Ratio = 0<br />

Ratio = Ratio1<br />

Rat io = Rat io2<br />

Ratio = Ratio3<br />

Ratio = Ratio4<br />

138<br />

Ratio = Heat to Electricity Ratio<br />

R100 = Heat to Electricity Ratio at 100 %<br />

PC1 = 25 % or other input percentage<br />

PC2 = 50 % or other input percentage<br />

PC3 = 75 % or other input percentage<br />

Ratio1 = Ratio at PC1<br />

Ratio2 = Ratio at PC2<br />

Ratio3 = Ratio at PC3<br />

Ratio4 = Ratio at 1 00 %<br />

Ratio = ((( 1 + R100 ) x SFC ) / SFC4 ) - 1<br />

(specific fuel consumption)<br />

Ratio = ((( 1 + R100 ) x SFC4 ) / SFC ) - 1<br />

(efficiency)<br />

Ratio = ((PC1 - PL) / PC1 )) x (Ratio1 - Ratio2) + Ratio1<br />

Ratio = ((PL - PC1 ) / (PC2 - PC1 )) x (Ratio2 - Ratio1 ) + Ratio1<br />

Ratio = ((PL - PC2) / (PC3 - PC2)) x (Ratio3 - Ratio2) + Ratio2<br />

Ratio = ((PL - PC3) / (PC4 - PC3)) x (Ratio4 - Ratio3) + Ratio3<br />

Figure 5.11 Heat to Electricity Ratio Determination

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