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On the High-Performance Hydrodynamics Design of a Trimaran Fishing Vessel
Yanuar
,
Kurniawan Teguh Waskito
Department of Mechanical Engineering
Research output
:
Contribution to journal
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Article
›
peer-review
5
Citations (Scopus)
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Keyphrases
High Performance
100%
Fishing Vessel
100%
Trimaran
100%
Hydrodynamic Design
100%
Trimaran Hull
75%
Ship Speed
50%
Sailing
50%
Ship Resistance
50%
Forward Speed
50%
No Significant Difference
25%
Wavelength Range
25%
Analytical Method
25%
Motion Amplitude
25%
Operational Efficiency
25%
Resistance Characteristics
25%
Multi-hull
25%
Monohull
25%
Design Basis
25%
Initial Design
25%
Seakeeping Characteristics
25%
Ship Motions
25%
Wave Resistance
25%
Ship Type
25%
Sea Environment
25%
Safety Reliability
25%
Slender Body
25%
Seakeeping Performance
25%
Strip Theory
25%
Seakeeping Criteria
25%
Seakeeping
25%
Safety Efficiency
25%
Added Resistance in Waves
25%
Steady Waves
25%
Added Resistance
25%
Fishing Vessel Design
25%
Heave
25%
Intact Stability
25%
Dynamic Stability
25%
Head Seas
25%
Rough Seas
25%
Conventional Design
25%
Safety Operation
25%
Motion RAO
25%
Zero Speed
25%
Roll Motion
25%
Engineering
Hydrodynamic Performance
100%
Seakeeping
100%
Fishing Vessel
100%
Hull Form
75%
Ship Speed
50%
Ship Resistance
50%
Forward Speed
50%
Resistance Characteristic
25%
Monohulls
25%
Broad Range
25%
Ship Motion
25%
Design Stage
25%
Initial Design
25%
Slender Body
25%
Dynamic Stability
25%
Intact Stability
25%
Sea Environment
25%
Head Sea
25%
Roll Motion
25%
Added Resistance
25%
Sailing Vessels
25%
Strip Theory
25%