GIS and geographical analysis of the main harbors in the world

Author:

Valjarević Aleksandar1,Radovanović Dragan2,Šoškić Svetislav3,Bačević Nikola2,Milentijević Nikola2,Golijanin Jelena4,Ivanović Marko2

Affiliation:

1. Faculty of Geography, Department of Geospatial and Environmental Science, University of Belgrade , Studentski Trg 3/III , Belgrade , Serbia

2. Faculty of Sciences and Mathematics, Department of Geography, University of Pristina in Kosovska Mitrovica , 38220 Kosovska Mitrovica , Serbia

3. Department of Armaments and Army, Faculty of Defense, Military Academy , Pavla Jurišića Šturma Street, Number 33 , 11000 Belgrade , Serbia

4. Department of Geography, University of East Sarajevo , Vuka Karadzića 30, 71126 , Istočno Sarajevo , Bosnia and Herzegovina

Abstract

Abstract This paper points out the possibilities of better exploitation of marine traffic as well as its connection with other kinds of traffic. Special attention is given to the analysis of 1,081 harbors about their availability during the year. The methods and algorithms used in GIS are buffers, cluster, method of interpolations, and network analysis. The methods used for the purpose of conducting numerical analyses are algorithms that served for the analysis of the network, its transport features, and the connectivity with harbors in terms of geospace. The main results found in this research showed that harbors have good connectivity in the first place with road traffic and after that with air and railroad traffic. According to data from 2019, all traffic lines cover 4.1 × 1015 km, and the road traffic has the most significant potential in connection with the harbors. The most connected harbors and airports are in the east coast of North America, west coast, north Europe, southern Europe, south-east Australia, a central part of Oceania, and south-east Africa. The results in the modified Likert scale between airports and harbors showed medium results. The densest road network is located in the eastern part of USA, western and central part of Europe, and east coast of China. The number of possible connected lines between main road nodes and harbors is 0.8 × 109. This type of traffic showed excellent results and connection with harbors. The number of possible connected lines per month between railroads and harbors is 1.3 × 103. This type of traffic showed low connectivity with the harbors. In the end comparison of harbors with air, road and railroad networks were established. The geographical position of harbors was analyzed, and better understanding was performed on a global scale.

Publisher

Walter de Gruyter GmbH

Subject

General Earth and Planetary Sciences,Environmental Science (miscellaneous)

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