Propulsion Solution for Icebreaking LNG Carriers

S. Hanninen, M. Barisic, T. Heideman, Krzysztof Goldon, Sampo Viherialehto, Pirjo Maattanen
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Abstract

Since 2007 the traffic volumes in the arctic seas have substantially increased, especially in the North-East Passage following the development of major oil and gas projects. In development of icebreaking LNG tankers the selection of propulsion system is playing a major role determining the vessel performance, safety and icebreaking capability. Recent success of YAMAL LNG project has led to accelerated development of new arctic LNG projects, such as Arctic LNG2. This paper will introduce some outstanding operational results from the revolutionary icebreaking LNG Carriers with modern azimuth propulsion system. This paper describes the methodology to use remote diagnostics systems (RDS) onboard ice-going LNG carriers to continually record, consolidate, upload, and analyze ice-breaking propulsion performance. We will further describe how vessel operational experience and RDS data can be used in development of icebreaking LNGC propulsion design and product development. The special focus in this paper will be given on propulsion system of large Arctic LNGC equipped with 3 × 15 000 kW azimuth thruster units. These propulsion devices help ship owners to access opportunities in the Arctic areas by providing safe and reliable operation in the region. Paper will highlight some of the key findings from the ship machinery data collected with RDS (Remote Diagnostic system) and further analyzed by engineer specialist in view of ice loading on machinery system and components. Podded propulsion solution has played major role on Arctic ship projects, making these challenging projects technically and economically feasible. We will present latest findings and unique results from Arctic LNG carriers, which is valuable information in development of future Arctic oil and gas transportation in the Northern hemisphere.
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破冰船推进解决方案
自2007年以来,北极海域的交通量大幅增加,特别是在主要石油和天然气项目开发之后,东北航道的交通量大幅增加。在破冰船的研制过程中,推进系统的选择对船舶的性能、安全性和破冰能力起着至关重要的作用。最近YAMAL液化天然气项目的成功导致了新的北极液化天然气项目的加速开发,如北极液化天然气2。本文将介绍采用现代方位角推进系统的革命性破冰船的一些突出的运行成果。本文介绍了在冰船上使用远程诊断系统(RDS)来持续记录、整合、上传和分析破冰推进性能的方法。我们将进一步描述船舶操作经验和RDS数据如何用于破冰船推进设计和产品开发的开发。本文将重点研究配备3 × 15000 kW方位推进器的大型北极lng船的推进系统。这些推进装置通过在该地区提供安全可靠的操作,帮助船东获得北极地区的机会。论文将重点介绍RDS(远程诊断系统)收集的船舶机械数据的一些关键发现,并由工程师专家进一步分析机械系统和部件的冰载荷。吊舱推进方案在北极船舶项目中发挥了重要作用,使这些具有挑战性的项目在技术和经济上都是可行的。我们将介绍北极液化天然气运输船的最新发现和独特结果,这对未来北半球北极石油和天然气运输的发展具有宝贵的信息。
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