• Title/Summary/Keyword: Machinery equipment/device of vessel

Search Result 3, Processing Time 0.016 seconds

Development of Design Method on High Pressure Vessel of 100L-700MPa Grade (100L-700MPa급 초고압 용기 설계 기술 개발)

  • Park, Bo-Gyu;Lee, Ho-Joon;Lee, In-Jun;Park, Si-Woo;Cho, Kyu-Shang
    • Journal of the Korean Society of Manufacturing Process Engineers
    • /
    • v.18 no.8
    • /
    • pp.67-73
    • /
    • 2019
  • An ultra-high pressure treatment device is a device used for increasing the shelf life of food by sterilizing it by applying hydrostatic pressure to solid or liquid food. The ultrahigh pressure treatment system developed in this study is a pressure vessel with a processing capacity of 100 L and a maximum pressure of 700 MPa. Pressure vessels for ultrahigh-pressure processing equipment are manufactured using wire-winding techniques. The design formula for making ultra-high pressure vessels with wire windings is given in ASME Section VIII - Division 3. In this study, the ratio of the cylinder to the winding area that can be applied in a wire-winding application was analyzed using a finite element analysis. Furthermore, the relationship between the variation of the residual stress in the vessel and the ratio of the winding area due to the variation of the winding tension was analyzed, and a design guide applicable to the actual product design was developed. Finally, the design equation was modified by presenting the coefficients to correct the difference between the finite element analysis and the design equation.

A Development of Data Management Platform for Shipboard Machinery Equipment to Share Maritime Field Data Exchange based on ISO 19847/19848 (ISO 19847/19848 기반 해상 필드 데이터 공유를 위한 선박 기관부 데이터 관리 플랫폼 개발)

  • Woo, Yun-Tae;Hwang, Hun-Gyu;Kim, Bae-Sung;Shin, Il-Sik;Jung, Hui-Sok;Park, Min-Sik;Lee, Jang-Se
    • Journal of the Korea Institute of Information and Communication Engineering
    • /
    • v.22 no.12
    • /
    • pp.1577-1588
    • /
    • 2018
  • Recently, many researches are progressing to support the operation and maintenance works of vessels using analyzed result based on various information of equipment. The interfaces of communication equipment are standardized very well, but the interfaces of machinery and other parts are not standardized yet. For that reason, there has limitations for data exchange and management. To solve the problem, the ISO is establishing new standards which are ISO 19847 for shipboard data servers th share field data at sea and ISO 19848 for standard data for shipboard machinery and equipment. In this paper, we developed a data management platform for shipboard machinery equipment, and tested the field data exchanging using the developed platform based on the standards. To do this, we analyzed the requirements of the standards and related researches, and designed an architecture of shipboard data platform that satisfied the requirements. Also, we developed components of the designed platform architecture and verified the effectiveness for it.

Development of PEID for Acquiring Maintenance Information during Product Lifecycle of Marine Vessels (선박해양구조물의 제품수명주기 내 유지보수 정보 획득을 위한 PEID에 관한 연구)

  • Jeon, Jeong-Ik;Lee, Jang-Hyun;Son, Gum-Jun
    • Journal of Ocean Engineering and Technology
    • /
    • v.26 no.5
    • /
    • pp.63-72
    • /
    • 2012
  • The product lifecycle of a marine vessel can be classified into the design-production, operation-maintenance, and disposal phases. During the operation and maintenance phase, status data should be gathered from the major machinery and instruments installed on the marine vessel in order to perform efficient maintenance work. Although a PLM (product lifecycle management) system can manage the product information during the design and assembly stage, a PLM based on asset management technology is more appropriate for product information management during the operation stage. Product embedded information devices (PEIDs) are suggested for gathering real-time maintenance information during the operation and maintenance lifecycle. A PEID allows PLM to provide the capability of offering active information exchange between the lifecycle management system and equipment. This study designed a PEID to effectively obtain information and interact with a PLM system. It consists of sensors, wireless communication, and a micro-processor, which allow it to accumulate status data on the PLM system. The embedded information device and PLM enable the seamless information flow, tracking, and updating of MRO (maintenance repair and overhaul) information for a product throughout the middle of the product lifecycle.