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Evaluating Structural Safety of Inner Hull Structure Affected by Cryogenic Temperature

机译:低温温度影响内船体结构的结构安全性

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The market of LNG (Liquefied Natural Gas) carrier is continuously in a prosperous condition, and a lot of LNG vessels are being built in many shipyards. Membrane-type MARK-III LNG CCS (Cargo Containment System) is used more and more in the construction of LNG carrier, and it has already taken considerable market share among the various LNG CCS products. This paper deals with a study on structural safety of LNG carrier whose inner hull structure is affected by cryogenic temperature of LNG. If the primary and secondary barriers are failed simultaneously, the inner hull structure comes to be in direct contact with LNG. It is well known that the cryogenic temperature exposes the inner hull structure to fatal risk of structural failure due to brittle fracture, but nevertheless it is quite difficult to find a precedent research which explains the degree of risk and severity with due consideration of the consequence caused by structural failure of inner hull. The heat transfer test has been performed using the specimen appropriate to realize test scenario while considering cryogenic liquid flow from primary and secondary barrier into inner hull structure, and at the same time, the specimen has been tested by applying proper deformation so as to examine the structural behavior of inner hull structure under cryogenic condition. The heat transfer analysis has been performed to simulate and verify the heat transfer test, and consequently it is possible to obtain actual distribution of temperature in the inner hull structure exposed to cryogenic temperature. The structural analysis has been performed to evaluate the damage of inner hull structure and as a result to assess overall decrease of hull girder strength of LNG carrier. Finally, consequence of the decrease of global strength has been discussed.
机译:LNG(液化天然气)载体的市场连续地繁荣,许多造船厂正在建造大量的液化雨船。膜型Mark-III LNG CCS(货物遏制系统)在液化天然气载体的建设中使用了越来越多,并且它已经在各种LNG CCS产品中进行了相当大的市场份额。本文涉及液体壳体结构受液化液体低温影响的LNG载体的结构安全研究。如果初级和二级障碍同时失败,则内部船体结构与LNG直接接触。众所周知,低温温度使内壳体结构暴露于由于脆性骨折引起的结构失效的致命风险,但是很难找到先前的研究,这解释了风险程度和严重程度,随时考虑所造的后果通过内壳的结构失败。已经使用适合于实现测试场景的试样进行传热测试,同时考虑到从初级和二级屏障进入内壳结构的低温液体流动,并且同时通过施加适当的变形来测试样本以检查样本以检查低温条件下内壳结构的结构行为。已经进行了传热分析以模拟和验证传热试验,因此可以在暴露于低温温度的内壳体结构中获得实际的温度分布。已经进行了结构分析以评估内部船体结构的损伤,结果评估LNG载体的船体梁强度的总体降低。最后,已经讨论了全球力量降低的结果。

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