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COMPARISON OF MEASURED AND SIMULATED SHORT TERM ICE LOADS ON SHIP HULL

机译:船船体测量和模拟短期冰载的比较

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Ship operations in ice are increasing as the interest in transport and oil and gas production in the Arctic is increasing. In order to ensure the safety at sea, the structure of ships has to be designed to withstand the ice induced loads on the ship hull. Therefore knowledge on local ice loads on ships is required. The knowledge on local ice loads has been gained through several full scale measurements in the past in which the frames of ships have been instrumented with strain gauges for local ice loads measurements. These measurements are the basis for current structural design methods. Full scale measurements are the only way to gain reliable data on ice loads on ships. However full scale measurements are lacking because they are expensive to obtain and ship specific. Furthermore, full scale measurements are obtained after building of the ship and therefore serve only for future design. Developing a reliable numerical method would enable to estimate the local ice loads in the design phase and improve the structural design of the ship. In order to establish a numerical method for the design, the method has to be validated with the full scale measurements on different ships. In this paper, a recently developed numerical method is compared with the full scale measurements conducted on board the Polar Research and Supply Vessel S.A. Agulhas II in the Baltic Sea during March 2012. Short term local ice loads on a frame are simulated with the numerical method by using the ship parameters, operational parameters and the measured ice conditions during the full scale measurements as an input. The simulated local ice loads at the bow are then compared with the measured local ice loads on the bow frame.
机译:由于北极地区的运输和石油和天然气生产的兴趣增加,冰中的船舶运营正在增加。为了确保海上的安全,船舶的结构必须设计成可承受船船体上的冰诱导的载荷。因此,需要了解船上当地冰块的知识。通过过去的几种全规模测量,通过了几种全尺寸测量来获得了对本地冰负荷的知识,其中船舶的框架已经用应变计进行局部冰负荷测量。这些测量是当前结构设计方法的基础。全规模测量是在船上获得可靠数据的唯一方法。然而,缺乏全面测量的测量,因为它们是昂贵的获得和船舶特定的。此外,在建造船舶之后获得全尺度测量,因此仅为未来的设计服务。开发可靠的数值方法将使设计阶段中的局部冰负载能够估算,提高船舶的结构设计。为了建立设计的数值方法,必须通过不同船舶的全尺度测量验证该方法。在本文中,将最近开发的数值方法与2012年3月在波罗的海的极性研究和供应船SA Agulhas II上进行的全尺度测量进行了比较。框架上的短期局部冰载是用数值方法模拟的通过使用船舶参数,操作参数和测量的冰条件作为输入。然后将船头处的模拟局部冰载与弓架上的测量的本地冰负载进行比较。

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