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    • Departamentos y Centros - Sailak eta Ikastegiak
    • Escuela Técnica Superior de Ingeniería Industrial, Informática y Telecomunicación - Industria, Informatika eta Telekomunikazio Ingeniaritzako Goi Mailako E.T.
    • Trabajos Fin de Máster ETSIIT - TIIGMET Master Amaierako Lanak
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    Energy analysis and costs estimation of an on-shore power supply system in the port of Gävle

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    JUAN_GUTIERREZ_SAENZ_Thesis_Report.pdf (3.016Mb)
    Date
    2019
    Author
    Gutiérrez Sáenz, Juan 
    Advisor
    Ameen, Arman 
    Version
    Acceso abierto / Sarbide irekia
    Type
    Trabajo Fin de Máster/Master Amaierako Lana
    Impact
     
     
     
     
     
     
     
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    Abstract
    The Port of Gävle is one of the most important harbours in Sweden as far as size and freight capacity is concerned. Marine traffic is increasing greatly, thus environmental pollution as well as noise and vibrations are of major concern in port cities. Shore to ship power supply systems might be a feasible solution to curtail emissions because the Auxiliary Engines are instead shut down while the ... [++]
    The Port of Gävle is one of the most important harbours in Sweden as far as size and freight capacity is concerned. Marine traffic is increasing greatly, thus environmental pollution as well as noise and vibrations are of major concern in port cities. Shore to ship power supply systems might be a feasible solution to curtail emissions because the Auxiliary Engines are instead shut down while the ship stays alongside the quay. The literature review shows they are reliable and very appealing in all respects, thereby contributing to sustainable development. Taking into account the kind of vessels that call at the Port of Gävle, a High Voltage Shore Connection is recommendable, in compliance with the International Standards. An own technical survey is developed to gather all the information, as well as personal interviews to collect first-hand data. Technical issues such as the synchronisation procedure and the ground system with regard to safety are briefly discussed. Due to the lack of data, calculations consist of average values: peak and average demand, and fuel consumption during a typical call. Considering updated energy prices for both electricity and fuel, results show that an on-shore power supply system make energy costs decrease by 71% at berth in comparison with burning marine fuel, which is saved by around 4 tonnes per call. Additionally, up to 5126 tonnes of CO2 are avoided per year, among other pollutants. Shore-side power has proven to be profitable and appealing to the Port of Gävle; however, vessels need to be retrofitted, which implies relatively high investments. Collaboration agreements and shipping companies’ willingness to undergo changes are key issues that still need to be solved. [--]
    Subject
    On-shore power supply, Alternative marine power, High-voltage shore connection, Shore-side power, Ship’s emissions, Marine fuel
     
    Degree
    Máster Universitario en Ingeniería Industrial por la Universidad Pública de Navarra / Nafarroako Unibertsitate Publikoko Unibertsitate Masterra Industria Ingeniaritzan
     
    URI
    https://hdl.handle.net/2454/36104
    Appears in Collections
    • Trabajos Fin de Máster ETSIIT - TIIGMET Master Amaierako Lanak [260]
    • Trabajos Fin de Máster - Master Amaierako Lanak [1342]
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