55th AIAA Aerospace Sciences Meeting 2017
DOI: 10.2514/6.2017-0319
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High Lift Common Research Model for Wind Tunnel Testing: An Active Flow Control Perspective

Abstract: This paper provides an overview of a research and development effort sponsored by the NASA Advanced Air Transport Technology Project to achieve the required high-lift performance using active flow control (AFC) on simple hinged flaps while reducing the cruise drag associated with the external mechanisms on slotted flaps of a generic modern transport aircraft. The removal of the external fairings for the Fowler flap mechanism could help to reduce drag by 3.3 counts. The main challenge is to develop an AFC syste… Show more

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Cited by 22 publications
(12 citation statements)
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References 35 publications
(41 reference statements)
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“…The 10%-scale semispan wind-tunnel test model of the CRM-HL was built for wind-tunnel testing. The CRM-HL geometry is open to the public and intended to be used in research and development efforts related to aerodynamic efficiency, noise reduction, high-lift aerodynamics/flow physics, and computational fluid dynamics (CFD) development/validation [5]. The CRM-HL model is representative of a modern civil transport airplane, and the 10%-scale semispan wind-tunnel test model includes both the conventional and AFC-enabled SHL systems.…”
Section: Nomenclaturementioning
confidence: 99%
See 1 more Smart Citation
“…The 10%-scale semispan wind-tunnel test model of the CRM-HL was built for wind-tunnel testing. The CRM-HL geometry is open to the public and intended to be used in research and development efforts related to aerodynamic efficiency, noise reduction, high-lift aerodynamics/flow physics, and computational fluid dynamics (CFD) development/validation [5]. The CRM-HL model is representative of a modern civil transport airplane, and the 10%-scale semispan wind-tunnel test model includes both the conventional and AFC-enabled SHL systems.…”
Section: Nomenclaturementioning
confidence: 99%
“…As a relevant high-lift geometry, the CRM-HL model can serve as a high-lift technology development platform and the performance levels achieved by the geometry can be a reference for the conventional high-lift systems [6]. Although the main focus of the wind-tunnel test campaign was to assess the feasibility of active flow control on the simplified CRM-HL configuration [5,7,8], the conventional CRM-HL version was also tested to establish a benchmark for the AFC research. The conventional CRM-HL model features a threeelement high-lift configuration that includes a slat, a main wing, and a single slotted Fowler flap [5,6].…”
Section: Nomenclaturementioning
confidence: 99%
“…28 A 10%-scale high-lift version of the CRM (CRM-HL) based on the geometry of Ref. 28 is being designed and built for wind tunnel testing 29 at the NASA Langley Research Center 14-by 22-Foot Subsonic Tunnel (14×22) during calendar year (CY) 2018. A simple hinged flap geometry with integrated and exchangeable AFC modules was derived from the conventional CRM-HL design.…”
Section: Introductionmentioning
confidence: 99%
“…The flap deflection range of the current investigation covers the range being proposed for a larger scale, wind tunnel experiment on a high-lift version of the Common Research Model (CRM). 13 The goal of the small-scale experiments is to investigate methods to improve the input power requirements of the AFC system that will be evaluated on the high-lift CRM. In this paper, we employ surface oil flow visualization and o↵-body measurements using Particle Image Velocimetery (PIV) to investigate the interaction between the SWJ excitation and the shear layer associated with the flow separation.…”
Section: Introductionmentioning
confidence: 99%