Flow Field and Performance Characteristics of Combustor Diffusers: A Basic Study

Author:

Hestermann R.1,Kim S.1,Ben Khaled A.1,Wittig S.1

Affiliation:

1. Lehrstuhl und Institut fu¨r Thermische Stro¨mungsmaschinen, Universita¨t Karlsruhe, Karlsruhe, Federal Republic of Germany

Abstract

Results of a detailed study concerning the influence of geometric as well as fluid mechanic parameters on the performance of a plane model combustor diffuser in cold flow are presented. For a qualitative insight into the complex flow field inside the prediffuser, the sudden expansion region, and the flow field around the flame tube dome, results of a flow visualization study with the hydrogen bubble method as well as with the ink jet method are presented for different opening angles of the prediffuser and for different flame tube distances. Also, quantitative data from detailed measurements with LDV and conventional pressure probes in a geometrically similar air-driven setup are presented. These data clearly demonstrate the effect of boundary layer thickness as well as the influence of different turbulence levels at the entry of the prediffuser on the performance characteristics of combustor diffusers. The possibility of getting an unseparated flow field inside the prediffuser even at large opening angles by appropriately matching the diffuser’s opening angle and the flame tube distance is demonstrated. Also, for flows with an increased turbulence level at the entrance—all other conditions held constant—an increased opening angle can be realized without experiencing flow separation. The comparison of the experimental data with predictions utilizing a finite-volume-code based on a body-fitted coordinate system for diffusers with an included total opening angle less than 18 deg demonstrates the capability of describing the flow field in combustor diffusers with reasonable accuracy.

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

Reference25 articles.

1. Ainley, D. G., 1945, “Investigations of Air Flow Through Some Annular Diffusers,” Power Jet Report 1151.

2. Adkins, R. C., 1983, “A Simple Method for Designing Optimum Annular Diffusers,” ASME Paper No. 83-GT-42.

3. Adkins R. C. , and WardleM. H., 1990, “A Method for the Design of Optimum Annular Diffusers of Canted Configuration,”ASME JOURNAL OF ENGINEERING FOR GAS TURBINES AND POWER, Vol. 114, pp. 8–12.

4. Bauer, H.-J., 1989, “U¨berpru¨fung numerischer Ansa¨tze zur Beschreibung turbulenter elliptischer Stro¨mungen in komplexen Geometrien mit Hilfe konturangepaßter Koordinaten,” Dissertation, Universita¨t Karlsruhe, Institut fu¨r Thermische Stro¨mungsmaschinen, Germany.

5. Benz, E., and Wittig, S., 1992, “Prediction of the Interaction of Coolant Ejection With the Mainstream at the Leading Edge of a Turbine Blade: Attached Grid Application,” presented at the Int. Symp. Heat Transfer in Turbomachinery, Aug. 24-28, Athens, Greece.

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