• Title/Summary/Keyword: 구형 볼구슬

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Thermal Stress Analysis of the Support System in Cryogenic Liquid Hydrogen Storage Tank (극저온 액체수소 저장탱크 지지시스템의 열응력 해석)

  • Park, Dong-Huen;Yun, Sang-Kook;Lee, Jung-Hyan;Jo, Won-Il;Baek, Young-Sun
    • Proceedings of the Korean Society of Marine Engineers Conference
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    • 2005.06a
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    • pp.239-245
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    • 2005
  • The reduction of heat transfer rate to the stored liquid hydrogen from outside condition is extremely important to keep the liquid hydrogen longer. In this paper the highly efficient support system for the liquid hydrogen storage vessel was newly developed and analysed. The support system was composed of a spherical ball in the center of supporter to reduce the heat transfer area, with its above and below supporting blocks which are the SUS and PTFE blocks inserted in the SUS tube. The heat transfer rate and temperature distribution of the support system were evaluated by FLUENT, and the thermal stress and strain were estimated by ANSYS software. The results showed that the heat transfer rate from outer vessel to inner one was extremely decreased compared with the common method which is simply SUS tubes inserted between inner and outer tanks. The thermal stress and strain were obtained well below the limited values. As a result, it was the most efficient support system of storage vessel for liquid hydrogen and most cryogenic fluids.

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Studies on Boring Characteristics and Mortality on the Valves of the Seed and Adult Meretrix petechialis by Glossaulax didyma didyma (Gastropoda: Naticidae) in the Shellfish Aquafarm and the Indoor Aquarium (패류양식장과 실내 사육수조에서 큰구슬우렁이 Glossaulax didyma didyma (Gastropoda: Naticidae)에 의한 말백합 종패와 성패의 패각 위 천공특징 및 폐사에 관한 연구)

  • Park, Young-Je;Kim, Sung-Han
    • The Korean Journal of Malacology
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    • v.27 no.2
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    • pp.131-141
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    • 2011
  • Boring caracteristics, boring rate, and predation, rates on the valves of the seed and adult clams of Meretrix petechialis by Glossaulax didyma didyma in the shellfish aquafarm and the indoor rearing aquarium were investigated by various morphometric data. The investigations were carried out from June to September, 2007. The morphology of drilled holes on the valves of M. petechialis showed the crater type as seen in the spats of Ruditapes philippinarum and M. lusoria. The sizes of the outer diameters of holes were greater than the inner diameters of the holes on the valves of M. petechialis in the shellfish aquafarm and the indoor aquarium at the laboratory. On the whole, the sizes of the holes on the valves of the seeds of M. petechialis was smaller than those bored holes on the adult valves. The location of the bored holes on the valves of the seeds varied widely with the the sizes of the individuals of M. petichialis, while most of holes on the valves of adult clams were located near the umbo position of the valves of the clams in the shellfish aquafarm and the indoor aquarium at the laboratory. On the whole, the outer and inner diameters of the bored holes increased with increase of shell lengths of the clams in the shellfish aquafarm and the indoor rearing aquarium at the laboratory. The authors could confirm experimentally the boring snail, G. didyma didyma, drilled the seeds and adult clams of M. petechialis. In the experiments for 15 days (three times repeated) in the indoor rearing aquarium at the laboratory, the mortality of dead shells to total shells of M. petechialis by boring snail Glossaulax didyma didyma was totally average 41.5%, and percent of drilled shells to total dead shells of clams by the boring snail was average 47.1%. Of total shells, percent of drilled shells to total shells of clams by the boring snail was totally average 19.3%. Predation of G. didyma didyma were greater at night than the day time. Average 0.5 seed and adult individuals of M. petewchialis were consumed per G. didyma didyma, per day. Predation varied with shell lengths of M. petechialis and shell widths of G. didyma didyma.