Tiwari et al., 2022 - Google Patents
Experimental investigation on the effects of froude number on manoeuvring characteristic of a research vesselTiwari et al., 2022
- Document ID
- 17445775796221147264
- Author
- Tiwari K
- Balagopalan A
- Krishnankutty P
- Publication year
- Publication venue
- Ships and Offshore Structures
External Links
Snippet
Oceanographic research vessels (ORVs) are used to collect ocean data and analyse them to understand the physical, chemical and biological characteristics of seawater, seabed and other ocean-related factors affecting climate changes. These task require vessel to track a …
- 230000000694 effects 0 title abstract description 39
Classifications
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01C—MEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
- G01C21/00—Navigation; Navigational instruments not provided for in preceding groups
Similar Documents
Publication | Publication Date | Title |
---|---|---|
EP3330171B1 (en) | Apparatus for predicting a power consumption of a maritime vessel | |
Karulin et al. | Numerical and physical simulations of moored tanker behaviour | |
Balagopalan et al. | Manoeuvring prediction of a container ship using the numerical PMM test and experimental validation using the free running model test | |
Paulauskas et al. | The influence of port tugs on improving the navigational safety of the port | |
Schumacher et al. | Experimental and numerical study of a containership under parametric rolling conditions in waves | |
Jiao et al. | Experimental Investigation of Wave‐Induced Ship Hydroelastic Vibrations by Large‐Scale Model Measurement in Coastal Waves | |
Hardisty | Estuaries: monitoring and modeling the physical system | |
Figari et al. | An all-round design-to-simulation approach of a new Z-drive escort tug class | |
Kim et al. | Nonlinear URANS model for evaluating course keeping and turning capabilities of a vessel with propulsion system failure in waves | |
Tiwari et al. | Experimental investigation on the effects of froude number on manoeuvring characteristic of a research vessel | |
Seo et al. | Numerical evaluation of ship turning performance in regular and irregular waves | |
Kim et al. | Nonlinear URANS model for path-following control problem towards autonomous marine navigation under wave conditions | |
Haase et al. | Numerical analysis of a planing boat in head waves using a 2D+ T method | |
Gorski | Present state of numerical ship hydrodynamics and validation experiments | |
Van et al. | Flow measurement around a model ship with propeller and rudder | |
Pinkster | Mean-and low-frequency wave forces on semisubmersibles | |
Balagopalan et al. | Manoeuvring prediction of a container ship in shallow water using numerical planar motion mechanism | |
CN108229723B (en) | Method and system for predicting ship drift path | |
Hajizadeh et al. | Determination of ship maneuvering hydrodynamic coe cients using system identi cation technique based on free-running model test | |
Shigunov | Numerical prediction of added power in seaway | |
Lataire et al. | Systematic techniques for fairway evaluation based on ship manoeuvring simulations | |
Vidar Grindheim et al. | Comparison of two models for prediction of seismic streamer state using the ensemble Kalman filter | |
Bassler et al. | Experimental ship dynamic stability assessment using wave groups | |
Frigo et al. | Two-dimensional vessel–current interaction model for inland waterways assessment | |
Dash et al. | Roll-induced bifurcation in ship maneuvering under model uncertainty |