THE APPLICATION OF KENTUCKY POWER

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1. GAS COMPRESSION We deteiinined that gas compression would generally not be needed for new gas plants located near and/or along the major gas pipelines selected in our study. Although gas pressures occasionally fall below the pressures the reference plants require, these instances are rare enough that gas compression capability would be generally unused. To support this conclusion we inquired with gas pipeline operators to confiiin the average and realistic ininiinum expected gas pressures in each location. The New Jersey site has the lowest gas pressures of all CONE Areas; however, we confirmed with individual plant operators in New Jersey that no on-site gas compression was needed at their facilities. Further, these eastei-n plants’ ability to meet capacity obligations is supported by having dual-fuel capability. J. BLACKSTARTCAPABILITY We do not include black start capability in either the CC or the CT reference units because few recently built gas units have this capability. Table 17 shows the number of gas CT and CC units that have been built and are currently operating with or without black start capability since 2002 based on PJM data. We reviewed these data by CONE Area and found no locational differences. Table 17 Black Start Capability in Gas Plants Built Since 2002 GasCT GasCC Total Number of Plants Built 24 21 Total Number of Plants with Black Start 4 1 Soirrces arid Notes PJM (201la) 111. REFERENCE TECHNOLOGY PERFORMANCE AND SPECIFICATIONS Table 18 shows the suimnaiy of plant characteristics selected in Section I1 as well as major plant performance characteristics as determined by CH2M HILL. As discussed in Section II.D, we identified the GE 7FA.05 turbine as the most appropriate technology for the reference gas CT andCCplants. Thisturbineissubstantiallylargerthanpreviousmodels,with the7FA.05model having an increased nominal capacity rating 36 MW relative to the 7FA.03, as well as having a substantially improved heatrate.23 This increases output significantly for both the gas CT and CC plants relative to previous PJM CONE studies, due to the larger gas turbine in all configurations as well as an increased size for the heat recovery steam generator (“HRSG”) and steam turbine on the CC. Table 19 contains a summary of emissions rates under each plant configuration. l 3 General Electric (2011a). 17

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