Calculation of Environmental Load for a Large FPSO Undocking

Duan Yuchun, Chen Zhimei, Yang Hankun, Zhou Bo, Ling Chunhui
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Abstract

Ship undocking is an essential process in the construction of large ship. Nowadays, the traditional empirical method is usually used to calculate the environmental load during large ship undocking of large ship and to determine the power and number of assistant tugboats in the world shipbuilding industry. Firstly, the OCIMF with traditional empirical formula mathematical model for solving the environmental load problem is established in this paper. According to the location of the dry dock and the meteorological and hydrological conditions while undocking, the environmental load of a large FPSO with different wind, wave, and current combination from 0°to 90°are is calculated by using the OCIMF with traditional empirical formula method, and then the influence of the wind, wave and current load on large FPSO are is analyzed. Secondly, the environmental load is calculated by using numerical simulation calculation method based on the same environment conditions. Through comparing the analysis results between the two calculation methods, the reliability of using the OCIMF method is testified reliable to large barge-type FPSO, and the maximum environmental load is determined. Lastly, as a result the undocking plan and the power and number of assistant tugboats are finally determined. The actual undocking project shows that the OCIMF with traditional empirical formula method is reliable for calculating the environmental load of a large barge-type FPSO.
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大型FPSO卸坞环境载荷计算
船舶卸坞是大型船舶建造过程中的一个重要环节。目前,世界造船业通常采用传统的经验方法来计算大型船舶离港时的环境负荷,确定辅助拖船的功率和数量。本文首先用传统的经验公式建立了求解环境荷载问题的OCIMF数学模型。根据干船坞所在位置和离坞时的气象水文条件,采用传统的经验公式方法,利用OCIMF计算了大型FPSO在0°~ 90°不同风、浪、流组合下的环境荷载,并分析了风、浪、流荷载对大型FPSO的影响。其次,在相同环境条件下,采用数值模拟计算方法计算环境荷载。通过对比两种计算方法的分析结果,验证了OCIMF方法对大型驳船型FPSO的可靠性,并确定了最大环境载荷。最后确定了离港方案和辅助拖船的功率和数量。实际卸坞工程表明,采用传统经验公式方法的OCIMF计算大型驳船型FPSO的环境载荷是可靠的。
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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