날개 끝단 부착 프로펠러와 날개 간의 공기역학적 상호작용 효과에 대한 전산해석

NUMERICAL INVESTIGATION OF AERODYNAMIC INTERACTION OF WINGTIP-MOUNTED TRACTOR PROPELLER WITH FIXED WING

초록

The next-generation sustainable aircraft using distributed electric propulsion (DEP) system has gained significant attention to replace conventional aircraft. Although the DEP system helps improve flight safety, reduce environmental noise, and achieve redundancy in the propulsion system, the mutual interaction between the multiple propeller and fixed-wing occurs more frequently. This interactional phenomenon is a dominant factor affecting the aerodynamic performance of vehicles. This study investigates the aerodynamic interactions between wing-tip mounted tractor propeller and fixed-wing using the lattice-Boltzmann method (LBM). NASA's Workshop for Integrated Propeller Prediction (WIPP) model is considered, and the LBM predictions are compared against the experimental data for validation. The propeller wake effects on the wing aerodynamics and flow field are discussed depending on the wing angles of attack.

키워드

친환경 항공기분산전기추진공력 상호작용전산유체역학격자 볼츠만 법Sustainable aircraftDistributed electric propulsionAerodynamic interactionComputational fluid dynamicsLattice-boltzman method
제목
날개 끝단 부착 프로펠러와 날개 간의 공기역학적 상호작용 효과에 대한 전산해석
제목 (타언어)
NUMERICAL INVESTIGATION OF AERODYNAMIC INTERACTION OF WINGTIP-MOUNTED TRACTOR PROPELLER WITH FIXED WING
저자
송현수황유현김시진명노신정용수이학진
DOI
10.6112/kscfe.2024.29.2.047
발행일
2024-06
저널명
한국전산유체공학회지
29
2
페이지
47 ~ 61