해양작업지원선(PSV)의 기본설계 및 저항추진 성능향상을 위한 선형개선 방안 연구A Study on the Basic Design for Platform Support Vessel (PSV) and Hull Form Development for Enhancement of Resistance & Propulsion Performance
- Other Titles
- A Study on the Basic Design for Platform Support Vessel (PSV) and Hull Form Development for Enhancement of Resistance & Propulsion Performance
- Authors
- 염종길; 강국진; 이영연; 이춘주; 옥군도
- Issue Date
- 2018
- Publisher
- 대한조선학회
- Keywords
- 해양작업선; PSV 개념설계; 선형설계; 추진성능; 덕트붙이 아지무스 쌍 추진기; Platform supply vessel(PSV); Basic design of PSV; Hull form design; Powering performance; Twin Ducted Azimuth Propulsor
- Citation
- 대한조선학회 논문집, v.55, no.3, pp 196 - 204
- Pages
- 9
- Journal Title
- 대한조선학회 논문집
- Volume
- 55
- Number
- 3
- Start Page
- 196
- End Page
- 204
- URI
- https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/513
- DOI
- 10.3744/SNAK.2018.55.3.196
- ISSN
- 1225-1143
- Abstract
- Present paper shows the basic design procedure for platform support vessel operating in open sea, and hull form development process. General design concept considering the operating mission, operating sea condition and shipping freight, etc. is explained shortly. For the hull form design, the initial hull form was designed based on the reference PSVs. The resistance and propulsion test results for the initial hull form with twin Azimuth thruster were analyzed and a few items for improvement were derived. At the next stage, main parameters including Length, Cp-curve, Cb, Lcb, etc. were changed totally for the hull form improvement. Furthermore, 3 different bulbous bows for the fore-body design to reduce the wave resistance and after-body design to reduce the residual resistance were carried out. The best hull form among the 3 fore-bodies with same after-body was selected through the comparison of wave resistance calculation results. Twin ducted Azimuth thruster with the smaller propeller diameter than the former were adapted to increase the propulsive efficiency. The final hull form with the twin Azimuth thruster was evaluated to satisfy more than the target design speed 14 knots in sea condition with sea margin 15% at the 5,000kW BHP through the model test in KRISO.
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