Analysis of concentric canister wall roughness effect on jet flow based on fluid dynamics

Yunshan Bai*, Yi Jiang, Dongmo Zhou

*Corresponding author for this work

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

Abstract

Adopting concentric canister launchers (CCL), high temperature and high pressure environment of CCL is unfavorable for the missile launch. In addition to the gap between internal canister and external canister, injecting water for cooling are the main factor of impact the canister flow field, CCL's rough wall is also a very important influence factor. In this paper, under the two working conditions of rough wall and smooth wall, use dynamic layering manner of moving mesh update method to simulate concentric canister missile launch process. The results reveal that rough wall has a great influence for pressure of concentric canister internal flow field, but the least influence for temperature. In practical engineering applications, need smooth surface material for smooth flow field exhaust when manufacturing concentric cylinder, but the non-concentric canister manufacturing of missile cold-launch canister, retain the rough wall can increase the pressure of the missile launch, this is conducive to missile launch, and also saves manufacturing costs, reduces processing procedures.

Original languageEnglish
Title of host publicationAdvanced Research on Applied Mechanics and Manufacturing System
Pages3-8
Number of pages6
DOIs
Publication statusPublished - 2013
Event2012 International Conference on Applied Mechanics and Manufacturing System, AMMS 2012 - Guangzhou, China
Duration: 24 Nov 201225 Nov 2012

Publication series

NameApplied Mechanics and Materials
Volume252
ISSN (Print)1660-9336
ISSN (Electronic)1662-7482

Conference

Conference2012 International Conference on Applied Mechanics and Manufacturing System, AMMS 2012
Country/TerritoryChina
CityGuangzhou
Period24/11/1225/11/12

Keywords

  • Concentric canister
  • Jet flow
  • Roughness
  • Zone moving and dynamic laying methods

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