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How are combustion liner walls called in a gas turbine engine? 

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It is shown that the present approach may be used to study spray combustion flow fields for guiding the design of advanced gas turbine combustors.
Theoretically, the developed techniques can be applied to other gas turbine engines.
The results obtained in this study also allow gas turbine designers and modelers to choose the most suitable mechanism for combustion studies.
To the Authors’s knowledge, it is the first time in the world that this is achieved with gas turbine exhausts.
Also, this investigation can help in designing an efficient control system for the gas turbine engine of a particular application including being a part of power generation plant.
It is important that gas turbine and process specialists work together in an integrated fashion appreciating both turbine combustion issues and practical aspects relating to fuel system treatment and design.
The lessons learned from previous design attempts provide valuable insights into the design of a successful gas turbine engine operating under the FC regime.
The results obtained in this study also allow gas turbine designers and modellers to choose the most suitable mechanism for further combustion studies and development.
This model holds promise as a design tool for lean premixed gas turbine combustors.

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