Unsteady Wake Flow Simulation of Multi-wings in a Schooling Using Viscous Vortex Particle Method

Xiaoxuan Meng, Junqiang Bai, Ziyi Xu, Zhongyuan Zheng, Min Chang, Zhiwei Chen

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

The multi-wings in a schooling can reduce the drag and increase the flight range using the wake in a beneficial way. In order to beneficially use the wake to avoid its adverse effects, the fast and accurate wake simulation method for multi-wings schooling flight is necessary. A numerical method for wake flow simulation and wing load calculation is established based on the viscous vortex particle method (VVPM) and the unsteady panel method (UPM). The numerical method is validated by simulation on the NACA0015 wing, which reveals that the surface load on the wing and the evolution of the wake behind the wing aligned well with the experimental test data. For the multi-wing in a schooling, in order to avoid the phenomenon that the particle will penetrate the downstream wing panel in schooling flight and accurately model the interaction between the wing and wake, the near-wall velocity reconstruction approach for vortex particles is established followed the principle of fluid dynamics. The enhanced approach is used to simulate the wake flow in multi-wings in a schooling and is compared to the high-fidelity CFD method. The results show that VVPM with the velocity reconstruction approach can well model the interaction between the wing and wake, which in turn improves the accuracy of wake simulation.

Original languageEnglish
Title of host publication2023 Asia-Pacific International Symposium on Aerospace Technology, APISAT 2023, Proceedings - Volume II
EditorsSong Fu
PublisherSpringer Science and Business Media Deutschland GmbH
Pages1679-1688
Number of pages10
ISBN (Print)9789819740093
DOIs
StatePublished - 2024
EventAsia-Pacific International Symposium on Aerospace Technology, APISAT 2023 - Lingshui, China
Duration: 16 Oct 202318 Oct 2023

Publication series

NameLecture Notes in Electrical Engineering
Volume1051 LNEE
ISSN (Print)1876-1100
ISSN (Electronic)1876-1119

Conference

ConferenceAsia-Pacific International Symposium on Aerospace Technology, APISAT 2023
Country/TerritoryChina
CityLingshui
Period16/10/2318/10/23

Keywords

  • Flow interaction
  • Multi-wings in a schooling
  • Near-wall velocity reconstruction
  • Unsteady aerodynamics
  • Viscous vortex particle method

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