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PhD Thesis - Energy Systems Research Unit - University of Strathclyde

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educed by 4% per 500 metres, and by 6% above 3000 metres. Therefore, if the<br />

altitude is above the threshold level, and if the engine is situated in an area<br />

where it is affected by ambient temperature, the maximum available power<br />

(rated power) must be reduced accordingly. If the engine is situated in an area<br />

that is not affected by ambient temperature, the constant average room<br />

temperature is used for derating. The algorithm used to determine the rated<br />

power used for the rest <strong>of</strong> the procedure is shown in Figure 5.6.<br />

No<br />

No<br />

No<br />

Is alt > H1 ?<br />

Is derating<br />

required ?<br />

PC = 0<br />

Are 2 heights<br />

given ?<br />

PC = ((Alt - H1) / D1) x H1PC<br />

No<br />

Rat ed Power =<br />

Rat ed Power<br />

No<br />

Is one height<br />

given ?<br />

Yes<br />

Yes<br />

Yes<br />

Yes<br />

Is Temp<br />

Given ?<br />

Yes<br />

Is plant sited in area<br />

affected by ambient temp ?<br />

Yes<br />

Is Ambient ><br />

Temp ?<br />

No<br />

Does PC = 0 ?<br />

Figure 5.6 Derating Algorithm<br />

Yes<br />

Is alt > H2 ?<br />

No<br />

Is alt > H1 ?<br />

Yes<br />

No<br />

Alt = Altitude<br />

Ambient = Ambient Temperature<br />

Room = Room Temperature<br />

No<br />

DERATING CRITERIA<br />

Above H1 metres above sea level: H1PC % per D1 metres<br />

Above H2 metres above sea level: H2PC % per D2 metres<br />

Above Temp Degrees C: TempPC % per Deg Degrees C<br />

126<br />

Yes<br />

Yes<br />

No<br />

Pated Power = Rated Power -<br />

(( Rated Power x PC ) / 100)<br />

PC = (((Alt - H2) / D2) x H2PC)<br />

+ ((H2 - H1) / D1) x H1PC<br />

PC = ((Alt - H1) / D1) x H1PC<br />

PC = PC + ((Room - Temp) / Deg) x TempPC<br />

PC = PC + ((Ambient - Temp) / Deg) x TempPC

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