The effects of tunnel height and centre bow length on the motions of a 112-m wave-piercer catamaran with an above water centre bow were investigated through model tests. Five alternative centre bow configurations were considered, and multiple series of model tests were conducted in regular head sea waves. The results showed that both heave and pitch increased over a wide range of wave encounter frequency as the wet-deck height of the catamaran model increased. However, increasing the length of the centre bow showed an increase in the pitch but a decrease in the heave for a limited range of wave encounter frequency near the heave and pitch resonance frequencies of the catamaran model. The positions of minimum vertical displacement were found...
An experimental program was performed with hard-chine catamaran models in regular waves. The distanc...
High‐speed craft frequently experience large wave impact loads due to their large motions and accele...
High-speed craft frequently experience large wave impact loads due to their large motions and accele...
The effects of tunnel height and centre bow length on the motions of a 112-m wave-piercer catamaran ...
An experimental study was performed to determine the influence of centre bow length and tunnel heigh...
An above water centre bow in wave piercing catamarans provides additional reserve buoyancy for minim...
For wave piercing catamarans, the centre bow length and tunnel clearance are important design factor...
The effect of various centre bow lengths on the motions and wave-induced slamming loads on wave-pier...
Wave-piercing catamarans are used extensively for both defence and commercial sea transportation bec...
Centre bow (CB) design for wave-piercing catamarans (WPCs) is a critical compromise between minimiza...
Background:The wet-deck height and centre bow configuration in wave piercing catamarans are critical...
The influence of a centre bow on the severe wetdeck slamming behaviour for a range of hull forms ba...
Slamming loads and pressures on high-speed catamarans with a centre bow (CB) differ from those on co...
Advancement in the design of large high-speed ferries demands comprehensive knowledge of ship motion...
An experimental program was performed with hard-chine catamaran models in regular waves. The distanc...
High‐speed craft frequently experience large wave impact loads due to their large motions and accele...
High-speed craft frequently experience large wave impact loads due to their large motions and accele...
The effects of tunnel height and centre bow length on the motions of a 112-m wave-piercer catamaran ...
An experimental study was performed to determine the influence of centre bow length and tunnel heigh...
An above water centre bow in wave piercing catamarans provides additional reserve buoyancy for minim...
For wave piercing catamarans, the centre bow length and tunnel clearance are important design factor...
The effect of various centre bow lengths on the motions and wave-induced slamming loads on wave-pier...
Wave-piercing catamarans are used extensively for both defence and commercial sea transportation bec...
Centre bow (CB) design for wave-piercing catamarans (WPCs) is a critical compromise between minimiza...
Background:The wet-deck height and centre bow configuration in wave piercing catamarans are critical...
The influence of a centre bow on the severe wetdeck slamming behaviour for a range of hull forms ba...
Slamming loads and pressures on high-speed catamarans with a centre bow (CB) differ from those on co...
Advancement in the design of large high-speed ferries demands comprehensive knowledge of ship motion...
An experimental program was performed with hard-chine catamaran models in regular waves. The distanc...
High‐speed craft frequently experience large wave impact loads due to their large motions and accele...
High-speed craft frequently experience large wave impact loads due to their large motions and accele...