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Structural safety analysis for separator of young Mytilus galloprovincialis in marine farming

지중해담치 양식 어업 치패분리장비의 구조적 안전성 고찰

  • Yong-Ju LEE (Department of Automation Equipment Engineering, For-M Inc) ;
  • Sang-Hyuk PARK (Incorporated Research Association of Oceans and Fisheries Science Technology) ;
  • Ju-Sam PARK (Incorporated Research Association of Oceans and Fisheries Science Technology)
  • 이영주 (주식회사 포엠) ;
  • 박상혁 (사단법인 해양수산과학기술연구조합) ;
  • 박주삼 (사단법인 해양수산과학기술연구조합)
  • Received : 2022.12.16
  • Accepted : 2023.11.29
  • Published : 2023.11.30

Abstract

In this paper, among the various facilities used in marine farming, young bivalves of the Mytilus galloprovincialis of marine farming was placed on the deck of the fishing vessel to evaluate the environment conditions and drive shaft movement by rolling affecting the separator for the young bivalves and a clean process. There were a few studies on stress analysis of development facilities because it was difficult to access the fishing site due to the use of imported equipment and the lack of development of domestic equipment. In this study, stress analysis of the fixed part of separator for young bivalves and its adjacent part was performed on various phases when the vessel was tilted by rolling using the finite element method. In addition, the structural safety of the internal blade under the driving conditions according to the movement of the drive shaft by the hydraulic motor was confirmed through structural analysis. As a result, the connection part between the deck and the separator by rolling was confirmed to have higher stress than that of other parts due to stress concentration. In addition, it was confirmed that the maximum stress occurred on the connection part between blades. Even though the safety of the separator for marine farming was confirmed by structural analysis, it is necessary to comprehensively consider the age of vessels, the material of the deck, and the corrosion of the deck.

Keywords

Acknowledgement

본 연구는 해양수산부의 어업현장의 현안해결지원사업(지중해담치 양식의 자동화 시스템 및 친환경 생산기술개발)의 지원을 받아 수행한 연구이다(2022, 20220165).

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