Description: Das Projekt "Knowledge for ignition, acoustics and instabilities (KIAI)" wird vom Umweltbundesamt gefördert und von Rolls-Royce Deutschland Ltd & Co KG durchgeführt. For the time being, the European engine industry does not have at its disposal methodologies adapted to predict the unsteady behaviour of low NOx combustors. Consequently and in order to be able to set up the development of low NOx technologies, KIAI will deliver reliable unstationary CFD tools which will allow a deep comprehension of unsteady phenomena. The main objective of the KIAI project is to provide reliable methodologies to predict the stability of industrial low NOx combustors, as well as their ignition process from spark to annular combustion. When used at an early stage in the conception cycle of low NOx combustors, KIAI CFD methodologies will play a key role and considerably accelerate the delivery process of lean combustion technology with a proven capability to reach the 80Prozent NOx emissions reduction required for introduction into service before 2020 with the necessary reliability, safety and economical viability. As already demonstrated by past and ongoing studies and European projects, low NOx technologies lead to crucial unsteady phenomena that are neither controlled nor predictable at the moment. The scientific objectives of KIAI are directly linked to a better understanding and prediction of these unsteady phenomena: - Predict the coupling between the acoustics and the flame - Determine the acoustic boundary conditions of multiperforated plates surrounding the combustion chamber - Account for non-premixed spray flows in the combustion process - Explore aerodynamic unsteadiness in strutted pre-diffusers adapted to high mass flow injectors and develop a liquid film break-up model for an injector - Evaluate the sensitivity of LES predictions to small technological variations of geometry. Prime Contractor: SNECMA MOTEURS SA; Paris; France.
Types:
SupportProgram
Origin: /Bund/UBA/UFORDAT
Tags: NOx-Emission ? Aerodynamik ? Blech ? Paris ? Akustik ? Befruchtung ? Strömungstechnik ? Blei ? Frankreich ? Main ? Anlagenoptimierung ? Aufbereitungstechnik ? Emissionsminderungstechnik ? Verbrennungstechnik ? Stickoxide ? Verbrennung ? Prognose ? Emissionsminderung ? Luft- und Raumfahrttechnik ? Simulationsmodell ? Strömungsmechanik ? Strömungsmodell ? Studie ? Antriebstechnik ? REACH ? Brennkammer ? Diffusion ? Schadstoffminderung ? Stoffstrom ? Verkehrsemission ? Physikalischer Vorgang ? FP7-TRANSPORT ? CFD methodology ? Zündung ? lean combustion ? low NOx technology ? Flamme ? Instationärer Zustand ? Magerkonzept ? Ringbrennkammer ? Zerstäubung ? Zuverlässigkeit ?
Region: Brandenburg
Bounding box: 13.01582° .. 13.01582° x 52.45905° .. 52.45905°
License: cc-by-nc-nd/4.0
Language: Deutsch
Time ranges: 2009-01-01 - 2013-04-30
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