Xuru R. Duan
German Aerospace Center
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Featured researches published by Xuru R. Duan.
Journal of Engineering for Gas Turbines and Power-transactions of The Asme | 2007
Peter Weigand; Wolfgang Meier; Xuru R. Duan; Manfred Aigner
Nonintrusive laser-based and optical measurements were performed in a gas turbine model combustor with a lean premixed swirl-stabilized CH 4 -air flame at atmospheric pressure. The main objective was to gain spatially and temporally resolved experimental data to enable the validation of numerical CFD results of oscillating flames. The investigated flame was operated at 25 kW and Φ=0.70, and exhibited self-excited oscillations of more than 135 dB at ≈300 Hz. The applied measurement techniques were three-dimensional (3D) laser doppler velocimetry (LDV) for velocity measurements, OH* chemiluminescence yielding information about the heat release and pointwise laser Raman scattering for the determination of joint probability density functions (PDFs) of the major species concentrations, temperature, and mixture fraction. Each of these techniques was applied with phase resolution with respect to the periodic fluctuation of the pressure in the combustion chamber that was measured with a microphone probe. The measurements finally revealed that the mixing of fuel and air in this technical premixing system was strongly affected by the pressure fluctuations leading to changes in equivalence ratio during an oscillation cycle that, in turn, induced the pressure fluctuations.
Journal of Engineering for Gas Turbines and Power-transactions of The Asme | 2005
Robert Giezendanner; Peter Weigand; Xuru R. Duan; Wolfgang Meier; Ulrich Meier; Manfred Aigner; Bernhard Lehmann
The driving mechanism of pulsations in gas turbine combustors depends on a complex interaction between flow field, chemistry, heat release, and acoustics. Experimental data on all these factors are therefore required to obtain insight into the coupling mechanisms during a pulsation period. In order to develop a comprehensive experimental database to support a phenomenological understanding and to provide validation data for numerical simulation, a standard burner for optical investigations was established that exhibits strong self-excited oscillations. The burner was a swirl-stabilized nonpremixed model combustor designed for gas turbine applications and operated using methane as fuel at atmospheric pressure. It was mounted in a combustion chamber, which provides almost unobstructed optical access. The periodic combustion instabilities were studied by a variety of phase-resolved laser-based diagnostic techniques, locked to the frequency of the dominant pressure oscillation. Measurement techniques used were LDV for velocity measurements, planar laser-induced fluorescence for imaging of CH and OH radicals, and laser Roman scattering for the determination of the major species concentrations, temperature, and mixture fraction. The phase-resolved measurements revealed significant variations of all measured quantities in the vicinity of the nozzle exit, which trailed off quickly with increasing distance. A strong correlation of the heat release rate and axial velocity at the nozzle was observed, while the mean mixture fraction as well as the temperature in the periphery of the flame is phase shifted with respect to axial velocity oscillations. A qualitative interpretation of the experimental observations is given, which will help to form a better understanding of the interaction between flow field, mixing, heat release, and temperature in pulsating reacting flows, particularly when accompanied by corresponding CFD simulations that are currently underway.
Combustion and Flame | 2007
Wolfgang Meier; Peter Weigand; Xuru R. Duan; Robert Giezendanner-Thoben
Applied Physics B | 2005
Xuru R. Duan; Wolfgang Meier; Peter Weigand; Bernhard Lehmann
Proceedings of the Combustion Institute | 2005
Wolfgang Meier; Xuru R. Duan; Peter Weigand
Archive | 2005
Peter Weigand; Xuru R. Duan; Wolfgang Meier; Ulrich Meier; Manfred Aigner; Claude Bérat
Archive | 2006
Wolfgang Meier; Peter Weigand; Xuru R. Duan; Manfred Aigner
Archive | 2004
Wolfgang Meier; Xuru R. Duan; Peter Weigand; Robert Giezendanner; Ulrich Meier; Bernhard Lehmann
Archive | 2004
Wolfgang Meier; Peter Weigand; Xuru R. Duan; Robert Giezendanner; Ulrich Meier; Bernhard Lehmann; Manfred Aigner
Gas, Wärme international | 2004
Wolfgang Meier; Xuru R. Duan; Peter Weigand; Bernhard Lehmann