摘要
A design of VLCC of the maximum deadweight to pass the Strait of Malacca (Malacca Maximized VLCC) was developed. The loading capacity of 300~500 metric tones deadweight was achieved at a draught able to pass the Strait of Malacca. To Achieve high propulsive performance at sea, the hull particulars and the fore section of the hull were designed to prevent the resistance increase in waves and the stern form was optimized using CFD code to maintain low viscous resistance. Moreover, vibration response analysis for the superstructure was carried out using the three dimensional finite element model of the whole ship at the design stage. Measurement results of the vibration response of the superstructure were confirmed under the lower boundary of ISO6954:1984 at the official sea trial.
A design of VLCC of the maximum deadweight to pass the Strait of Malacca (Malacca Maximized VLCC) was developed. The loading capacity of 300~500 metric tones deadweight was achieved at a draught able to pass the Strait of Malacca. To Achieve high propulsive performance at sea, the hull particulars and the fore section of the hull were designed to prevent the resistance increase in waves and the stern form was optimized using CFD code to maintain low viscous resistance. Moreover, vibration response analysis...
出处
《船舶设计通讯》
2004年第1期33-37,共5页
Journal of Ship Design