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A Study on Loading Method of Large Scaffolding Module for LNG Carriers Using TRIZ

TRIZ를 이용한 LNG 운반선 대형 비계 모듈의 탑재 방안 연구

  • 박명철 (경운대학교 항공전자공학과) ;
  • 신상훈 (경운대학교 항공기계공학과)
  • Received : 2020.12.28
  • Accepted : 2021.03.05
  • Published : 2021.03.31

Abstract

To improve the productivity of cargo containment construction for a membrane LNG carrier, it is important to shorten the installation period and process of the scaffolding system, which is a construction workbench of a cargo containment for a membrane LNG carrier. As an effective method, opinions are being gathered to enlarge the lifting unit from the existing two stages to eight stages. On the other hand, the stresses around the pin and hole will increase significantly because of the increase in lifting load according to the large size of the module. The purpose of this study was to establish a new large module-lifting plan by introducing TRIZ to solve these problems. This study adopted a method to utilize 40 inventive principles, which is one of the various problem-solving tools of TRIZ. First, technical contradictions were derived, the engineering parameters were selected. Second, efficient inventive principles were selected to overcome the technical contradictions using a contradiction matrix. Finally, the general and specific solutions were derived through the selected inventive principle, and structural analysis confirmed that the stress generated in the structure was low. The utility of TRIZ was confirmed by the successful lifting of large modules using the established lifting method.

멤브레인(membrane) LNG 운반선 화물창(cargo containment) 공사의 생산성 향상을 위해서는 공사 작업대인 비계 시스템(scaffolding system)의 설치 기간 및 공정 단축이 요구된다. 이를 위한 효과적인 방안으로 모듈의 탑재 단위를 기존의 2단에서 8단으로 대형화하자는 의견이 수렴되고 있다. 하지만, 모듈의 대형화로 인해 탑재 하중이 증가하면 메인 수직 파이프를 연결해주는 핀(pin)과 홀(hole) 주위에 국부 응력이 증가하여 재료의 항복응력을 초과하게 되는 문제점이 발생한다. 본 연구의 목적은 이러한 문제점을 해결하기 위해 트리즈(TRIZ)를 도입하여 새로운 대형 모듈의 탑재 방안을 수립하는 것이다. 본 연구에서는 트리즈의 여러가지 문제해결 도구 중 하나인 40가지 발명원리를 활용하는 방안을 채택하였다. 먼저 기술적 모순을 도출하고, 공학변수를 선정하였으며, 모순행렬을 활용하여 기술적 모순을 극복하기 위한 효율적인 발명원리를 선정하였다. 선정된 발명원리를 통해 일반해결안 및 특정해결안을 도출하였고, 구조해석을 통해 구조물에 발생하는 응력이 낮은 수준임을 확인하였다. 수립된 탑재 방안을 적용한 대형 모듈의 실제 탑재에 성공함으로써 트리즈의 유용성을 확인하였다.

Keywords

References

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