FSI 해석기법을 이용한 에어건 수중발파 응답해석 검증
Air gun shock system is used as an alternative energy source as part of the attempt to overcome the restrictions of economical expense and environmental damage, etc., due to the use of explosives for the UNDerwater EXplosion (UNDEX) shock test. The objectivity of this study is to develop the simulat...
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Published in | 大韓造船學會 論文集 Vol. 54; no. 6; pp. 522 - 529 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | Korean |
Published |
대한조선학회
2017
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Subjects | |
Online Access | Get full text |
ISSN | 1225-1143 2287-7355 |
DOI | 10.3744/SNAK.2017.54.6.522 |
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Abstract | Air gun shock system is used as an alternative energy source as part of the attempt to overcome the restrictions of economical expense and environmental damage, etc., due to the use of explosives for the UNDerwater EXplosion (UNDEX) shock test. The objectivity of this study is to develop the simulation technique of air gun shock test for the design of model-scale one for the near field non-explosive UNDEX test through its verification with full-scale SERCEL shock test result. Underwater blasting response analysis of full-scale air gun shock test was carried out using highly advanced M&S (Modeling & Simulation) system of FSI (Fluid-Structure Interaction) analysis technique of LS-DYNA code, and was verified by comparing its shock characteristics and behaviors with the results of air gun shock test. |
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AbstractList | Air gun shock system is used as an alternative energy source as part of the attempt to overcome the restrictions of economical expense and environmental damage, etc., due to the use of explosives for the UNDerwater EXplosion (UNDEX) shock test. The objectivity of this study is to develop the simulation technique of air gun shock test for the design of model-scale one for the near field non-explosive UNDEX test through its verification with full-scale SERCEL shock test result. Underwater blasting response analysis of full-scale air gun shock test was carried out using highly advanced M&S (Modeling & Simulation) system of FSI (Fluid-Structure Interaction) analysis technique of LS-DYNA code, and was verified by comparing its shock characteristics and behaviors with the results of air gun shock test. Air gun shock system is used as an alternative energy source as part of the attempt to overcome the restrictions of economical expense and environmental damage, etc., due to the use of explosives for the UNDerwater EXplosion (UNDEX) shock test. The objectivity of this study is to develop the simulation technique of air gun shock test for the design of model–scale one for the near field non-explosive UNDEX test through its verification with full-scale SERCEL shock test result. Underwater blasting response analysis of full-scale air gun shock test was carried out using highly advanced M&S (Modeling & Simulation) system of FSI (Fluid-Structure Interaction) analysis technique of LS-DYNA code, and was verified by comparing its shock characteristics and behaviors with the results of air gun shock test. KCI Citation Count: 0 |
Author | 이재석(Jae-Seok Lee) 이상갑(Sang-Gab Lee) 박지훈(Ji-Hoon Park) 박경훈(Kyung-Hoon Park) 정태영(Tae-Young Jung) 이환수(Hwan-Soo Lee) |
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DocumentTitleAlternate | Verification of Underwater Blasting Response Analysis of Air Gun Using FSI Analysis Technique |
DocumentTitle_FL | Verification of Underwater Blasting Response Analysis of Air Gun Using FSI Analysis Technique |
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Keywords | Alternative energy source(대체 에너지원) Air gun(에어건) Fluid-Structure Interaction(FSI) analysis technique(유체-구조 연성 해석기법) Underwater blasting response analysis of air gun shock test(에어건 충격시험의 수중발파 응답해석) UNDerwater EXplosion(UNDEX) shock test(수중폭발 충격시험) - |
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Title | FSI 해석기법을 이용한 에어건 수중발파 응답해석 검증 |
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