Mitsubishi Hitachi Power Systems (MHPS) has traditionally targeted high Turbine Inlet Temperatures (TiT) as the best way to increase the efficiency of gas turbines and the corresponding combined cycles. Among the latest techniques it is using to achieve this is the enhanced air cooling system that has been tested at its T-Point power plant in Japan.
Traditional air cooling designs involve ingestion of air, represented by the curved blue arrows in the lower left corner of Figure 5. This results in dilution of the hot gas into a lower TiT. Under this scenario, a higher flame temperature is required to achieve an elevated TiT with the consequential increase in NOx emissions. The closed circuit steam cooling eliminates the dilution of the hot gas and therefore allows a high TiT while containing NOx emission levels.
This cooled air is circulated through a jacketed transition piece arrangement, similar to the steam cooled counterpart, and is mixed with the combustion air after removing heat from the combustion hardware, in a semi-closed configuration. Figure 6 illustrates the concept and shows the application of the single stage radial boost-up compressor.
The supply of cooling air to the combustor in the Enhanced Air Cooling system is also used to optimize the Turbine Row 1 and 2 tip clearances. The air supply line is provided with a three-way valve that allows diverting the cooling air through the blade rings prior to entering the transition piece and combustor, as shown in Figure 7.







