동적 모델링을 이용한 연안조망 혼획저감장치의 성능 추정Performance Estimation of Bycatch Reduction Devices for Coastal Shrimp Beam Trawl Using Dynamic Modeling
- Other Titles
- Performance Estimation of Bycatch Reduction Devices for Coastal Shrimp Beam Trawl Using Dynamic Modeling
- Authors
- 이지훈; 이건호; 최규석; 김현영
- Issue Date
- Dec-2024
- Publisher
- 한국수산해양교육학회
- Keywords
- Key words : Shrimp beam trawl; Bycatch reduction device; Escape hole; Numerical modeling; Simulation; .
- Citation
- 수산해양교육연구, v.36, no.6, pp 1167 - 1179
- Pages
- 13
- Indexed
- KCI
- Journal Title
- 수산해양교육연구
- Volume
- 36
- Number
- 6
- Start Page
- 1167
- End Page
- 1179
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/75466
- DOI
- 10.13000/JFMSE.2024.12.36.6.1167
- ISSN
- 1229-8999
2288-2049
- Abstract
- Abstract The purpose of this study is to identify the shape of the net spread out underwater and bycatch reduction performance for target fish species when applying the four types of bycatch reduction devices of the bycatch management regulations to shrimp beam trawl. To this end, shrimp beam trawl was modeled as a mass-spring, and the size of the target fish species was investigated and compared with the size of the escape hole. As a result, the shape and size of the escape hole spread out of each bycatch reduction device was changed from that described in the regulations, and some had a reduced codend volume. In addition, the escape holes of the inclined-upward escape device, inclined-downward escape device, and wall-type-downward escape device were larger in height and width than the body height and width of the fish mainly caught in the shrimp beam trawl, while the escape hole of the conical-downward escape device was relatively smaller than the body width or height of the target fish. Therefore, it is thought that a study analyzing the underwater spreading out shape of bycatch reduction devices through numerical modeling can be an effective means for examining the design validity in advance.
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Collections - 해양과학대학 > Department of Maritime Police and Production System > Journal Articles

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