Comparison Study Between Design Ice Load and Actual Measured Ice Load During Ice Trial of Arctic LNG Carrier

Y. Jo, J. Choi, S. Park, Jai-Kyung Lee, H. Ki, Sungkon Han
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引用次数: 1

Abstract

The activities related to exploitation for oil and gas in the Arctic areas increase significantly. In order to transport increased resources in the Arctic areas, large Arctic commercial vessels such as gas carriers, oil tankers, bulk carriers, etc. are needed for mass transportation. In Arctic area, the ice load is the main factor of environmental load acting on Arctic vessel. The ice load is increased with the enlargement of vessel. The largest Arctic commercial vessel was built by DSME in 2016. The vessel was delivered after completion of ice trial in March 2017. The size of Arctic LNG carrier is larger than any other Arctic vessels have been constructed so far. The ice load monitoring system was installed for ice load measurement and structural safety of ice navigation of this large LNG carrier. This paper is concerned with comparison between estimated ice load for structural design and measured ice load for vessel navigation in Arctic area. Design ice load was calculated according to prescriptive rules of the Classification societies. Actual ice load during ice navigation was measured from ice load monitoring system. The arrangement of sensors in the monitoring system was determined for the precise measurement of ice induced loads acting on the hull. FE analyses were also carried out to compare between estimated ice load and measured ice load considering complex structural details in the Arctic LNG carrier.
北极LNG运输船试冰期间设计冰载与实测冰载的比较研究
在北极地区与开采石油和天然气有关的活动大大增加。为了运输北极地区增加的资源,需要大型北极商业船舶,如天然气运输船、油轮、散货船等进行大量运输。在北极地区,冰荷载是作用在北极船舶上的主要环境荷载。冰载随船的增大而增大。最大的北极商船是由DSME于2016年建造的。该船于2017年3月完成冰试后交付。北极液化天然气运输船的规模比迄今为止建造的任何其他北极船只都要大。该大型LNG运输船安装冰载监测系统是为了冰载测量和冰航结构安全。本文研究了北极地区船舶航行冰荷载的测量与结构设计冰荷载的比较。设计冰荷载是根据船级社的规定计算的。利用冰荷监测系统测量了航行过程中的实际冰荷。为了精确测量作用在船体上的冰致载荷,确定了监测系统中传感器的布置。考虑到北极LNG运输船复杂的结构细节,还进行了有限元分析,比较了估计冰载荷和测量冰载荷之间的差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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