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Manoeuvring characteristics of the push train with an auxiliary steering device

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EN
Abstrakty
EN
The carried out and planned studies on the revitalisation of Odra and Vistula rivers in Poland and restoration of regular inland navigation put a great attention into environmental issues related to the operation of inland waterborne transport means. The design and operational parameters of inland ships and convoys are dependent on waterways dimensions and their influence on the environment. The article presents problems related to manoeuvring performance of the push train, which is the most popular inland waterborne means of freight transport in Poland and in Europe. The alternative auxiliary steering device improving push train manoeuvrability has been tested on the physical model of a push barge. The active bow steering device consisted two bow rotors has the influence on the operational safety of the push train with respect to improved manoeuvring characteristics and decreased impact on the environment, port and lock facilities, ships and boats in narrow passages. The results of model tests presented in the article allowed for estimation of turning ability of the push train with and without bow rotors. A significant difference was observed with respect to the manoeuvring area, distances of advance, tactical diameter, and time of the manoeuvre.
Twórcy
  • Gdynia Maritime University Morska Street 81-87, 81-225 Gdynia, Poland tel.: +48 58 5586120, fax: +48 58 5586101
autor
  • Gdynia Maritime University Morska Street 81-87, 81-225 Gdynia, Poland tel.: +48 58 5586120, fax: +48 58 5586101
Bibliografia
  • [1] Abramowicz-Gerigk, T., Błachuta, J., Burciu, Z., Granatowicz, J., Jacyna, M., Kulczyk, J., Mazurek, M., Nowakowski, T., Picińska-Fałtynowicz, J., Skupień, E., Tubis, A., WerbińskaWojciechowska, S., Więckowska, M., Winter, J., Upgrading of Inland Waterway and Sea Ports, WP5 of European project INVAPO, Gdynia Maritime University, Gdynia 2014.
  • [2] Abramowicz-Gerigk, T., Burciu, Z., The influence of regular river navigation in special protection areas of NATURA 2000 Network, Journal of KONES, Vol. 23, pp. 9-16, 2016.
  • [3] Abramowicz-Gerigk, T., Burciu, Z., Jachowski, J., An innovative steering system for a river push barge operated in environmentally sensitive areas, Polish Maritime Research, 4 (96), Vol. 24, pp. 27-34, 2017.
  • [4] Abramowicz-Gerigk, T., Burciu, Z., Gorski, W., Reichel, M., Full scale measurements of pressure field induced on the quay wall by bow thrusters – indirect method for seabed velocities monitoring, Ocean Engineering, Vol. 162, pp. 150-160, 2018.
  • [5] Burciu, Z., Gąsior, A., The analysis of the possibility of revitalization of the Lower Vistula river based on INWAPO European Project, Scientic Journals of Gdynia Maritime University, No. 92, 2015.
  • [6] EMMA – Enhancing freight Mobility and logistics in the BSR by strengthening inland waterway and river sea transport and promoting new international shipping services, project funded by the Interreg Baltic Sea Region Programme 2014-2020.
  • [7] Heinz, M., Söhngen, B., Doychev, S., Broz, H., Heidenstecker, H., Hüsig, A., MeyerMölleringhof, C., Lohbeck, M., Driving Dynamics of Inland Vessels Vessel Behaviour on European Inland Waterways and Waterway Infrastructure with Special Respect to German Waterways. Federal Waterways Engineering and Research Institute. Published Federal Waterways Engineering and Research Institute, Karlsruhe, https://izw.baw.de/publikationen/vzb_dokumente_oeffentlich/0/BAW_VBW_Driving_Dynamics_of_Inland_Vessels.pdf,Germany 2016.
  • [8] Jachowski, J., Abramowicz-Gerigk, T., Burciu, Z., Pacholski, M., Technical Report, Gdynia Maritime University, Project No. RPPM.01.01.01-22-0068/16-00, 2018.
  • [9] Kulczyk, J., Werszko, R., Influence of ship motion on waterway backward current velocity, Polish Maritime Research, Special, Iss. S2, 2006.
  • [10] PIANC, Guidelines for protecting berthing structures from scour caused by ships, Maritime Navigation Commission, Report No. 180, www.pianc.org, 2015.
  • [11] PRS Rules, Navigability and manoeuvrability tests of inland waterway vessels and convoys, Polish Register of Shipping, 2010.
  • [12] Rabant, H., Habel, M., Babiński, Z., Transport of the oversized goods on the Vistula waterway, The basic waterway parameters and main difficulties, Works of Commission of Communication Geography, PTG, 19(3), pp. 7-17, 2016.
  • [13] Tabaczek, T., Kulczyk, J., Zawislak, M., Analysis of hull resistance of pushed barges in shallow water, Polish Maritime Research 1(51), Vol. 14, pp. 10-15, 2007.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0d5e23f7-0e03-4a1e-85c3-50cc7b89f1a6
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