Welkom op het expertplatform!
Dit platform verschaft informatie en kennis omtrent de WL expertisedomeinen 'hydraulica en sediment', 'havens en waterwegen', 'waterbouwkundige constructies', 'waterbeheer' en 'kustbescherming' - gaande van WL medewerkers met hun expertise, het curriculum van deze instelling, tot publicaties, projecten, data (op termijn) en evenementen waarin het WL betrokken is.
Het WL onderschrijft het belang van "open access" voor de ontsluiting van haar onderzoeksresultaten. Lees er meer over in ons openaccessbeleid.
[ meld een fout in dit record ] | mandje (1): toevoegen | toon |
one publication added to basket [295278] | |
Manoeuvring behaviour of push convoys: sub report 8. Additional fast time validation of Class Va and Vb vessels Vos, S.; Delefortrie, G.; Mostaert, F. (2018). Manoeuvring behaviour of push convoys: sub report 8. Additional fast time validation of Class Va and Vb vessels. Versie 2.0. FHR reports, 15_001_8. Flanders Hydraulics Research: Antwerp. VIII, 28 + 20 p. app. pp.
Deel van: FHR reports. Flanders Hydraulics Research: Antwerp, meer
|
Beschikbaar in | Auteurs |
| |
Documenttype: Projectrapport |
Trefwoorden |
Simulation Simulations Validation |
Author keywords |
|
Project | Top | Auteurs |
|
Auteurs | Top | |
|
Abstract |
The validation in the report is based on results of standard manoeuvres, performed with fast-time simulations. These simulations have been extended with unsteady turning manoeuvres. Skippers often have to manoeuvre in confined areas. During an approach of a lock or the execution of a turning manoeuvre in a swinging area, the manoeuvring model is often used beyond quadrant I. Sailing ahead with a negative thrust (propeller that runs astern) or sailing astern with a positive thrust are quite common. Because of that it was decided to perform turning manoeuvres in unsteady conditions. Normally a turning manoeuvre is started at a self-propulsion point. Because the speeds are rather small while approaching a lock or executing a turning manoeuvre, small initial negative and positive speeds have been applied for the turning manoeuvres. In several conditions the rate of turn during these unsteady turning manoeuvres wasn’t smooth. A drop of the rate of turn could be noticed. Starting with a negative speed, in some conditions it was not possible to reach a positive speed with the larger rudder angles. This was solved by reducing coefficient FX. By reducing NP, the drop issue of the rate of turn was improved. Additional to the reduction of NP, a few outliers were removed in the tables YPBetaTabel and YPGammaTabel. |
Top | Auteurs |