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http://dx.doi.org/10.5574/JAROE.2018.4.3.115

A Study on Loading Arm Envelope and Alarm Setting according to Ship Movement  

Choi, Byoung-Yeol (Zentech Engineering, Co., Ltd.)
Jo, Hyo-Jae (Korea, Korea Maritime and Ocean University)
Choi, Han-Sik (Zentech Engineering, Co., Ltd.)
Choi, Dong-Eon (Zentech Engineering, Co., Ltd.)
Publication Information
Journal of Advanced Research in Ocean Engineering / v.4, no.3, 2018 , pp. 115-123 More about this Journal
Abstract
This study was carried using the new approach method to design appropriately the Loading Arm length and the alarm setting according to ship movements on Loading and Unloading marine Berth. The quasi-static mooring analysis was performed to estimate 110,000DWT ship's movements based on environmental conditions such as wind, current and wave. The mooring motion of the ship is very important to determine the loading arm scope, and in this case, the operation condition is performed on the ship without considering the damaged condition of the mooring line because the ship movement in case of damage is larger than intact, and all operations are stopped, the loading arm being released due to control system. From the result of mooring analysis, motion displacements, velocities and accelerations were simulated. They were used to simulate the maximum drifting speeds and distances. The maximum drifting speeds were checked to be satisfied within drifting speed limits. The total maximum drifting distances were simulated with alarm steps of the new approach method. Finally, the loading arm envelopes using the total maximum drifting distances were completed. Therefore, it was confirmed that the new approach method for loading arm envelopes and alarm settings was appropriate from the above results. In the future, it will be necessary to perform the further advanced dynamic mooring analysis instead of the quasi-static mooring analysis and to use the precise computer program analysis for various environments and ship movement conditions.
Keywords
Wind force; Current force; Wave force; Displacement; Flanging area; Drifting area; Drifting velocity; Drifting distance; Intact mooring; Alarm setting; Arm mechanical limit; Loading arm envelope;
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