Verlagslink: http://www.fzt.haw-hamburg.de/pers/Scholz/Aero/AERO_PUB_Winglets_IntrinsicEfficiency_CEAS2017.pdf
Titel: Definition and Discussion of the Intrinsic Efficiency of Winglets
Sprache: Englisch
Autorenschaft: Scholz, Dieter  
Herausgeber: Council of European Aerospace Societies 
Schlagwörter: wingtip; winglet; induced drag; wing mass; aircraft design
Erscheinungsdatum: 2017
Konferenz: Aerospace Europe CEAS Conference 2017 
Zusammenfassung: 
Three simple equations are derived to define the "intrinsic aerodynamic efficiency of winglets" independent of the horizontal extension of the winglet and independent of the winglet’s (relative) height. This "intrinsic aerodynamic efficiency" allows a quick comparison of purely the aerodynamic shape of winglets independent of the selected size chosen for a certain aircraft installation. The intrinsic aerodynamic efficiency is calculated in 3 steps: STEP 1: The relative total drag reduction due to the winglet is converted into an assumed contribution of the winglet only on the span efficiency factor. STEP 2: If the winglet also increases span, its performance is converted into one without the effect of span increase. STEP 3: The winglet’s reduction in induced drag is compared to a horizontal wing extension. If the winglet needs e.g. to be three times longer than the horizontal extension to achieve the same induced drag reduction, its "intrinsic aerodynamic efficiency" is the inverse or 1/3. Winglet metrics as defined are calculated from literature inputs. In order to evaluate winglets further, the mass increase due to winglets is estimated in addition to the reduction of drag on aircraft level and fuel burn.
URI: http://hdl.handle.net/20.500.12738/2475
Begutachtungsstatus: Unbekannt / keine Angabe
Einrichtung: Department Fahrzeugtechnik und Flugzeugbau 
Fakultät Technik und Informatik 
Forschungsgruppe Flugzeugentwurf und -systeme (AERO) 
Dokumenttyp: Konferenzveröffentlichung
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