Method of Time Estimation for the Bathymetric Surveys Conducted with a Multi-Beam Echosounder System

Author:

Grządziel Artur1ORCID

Affiliation:

1. Department of Navigation and Marine Hydrography, Faculty of Navigation and Naval Weapon, Polish Naval Academy, 81-127 Gdynia, Poland

Abstract

Exact and complete preparation of a hydrographic survey project allows for the avoidance or reduction of additional costs and unexpected delays and, at the same time, increases the efficiency of the survey. One of the essential requirements at the survey planning stage is a calculation of time necessary for performing bathymetric measurements with a multi-beam echosounder. Based on these calculations, many decisions related to the costs and methodology are made. The article presents the method of time estimation for the hydrographic surveys and takes into account many variables that directly affect the final duration of the project. The paper demonstrates the influence of water depth, multi-beam echosounder swath angle, and other planning parameters related to the scheme of survey lines on the total time of stay at sea. The main findings are based on the author’s over twenty years of experience aboard the Polish Navy hydrographic ship Arctowski and include thorough analysis of specialist literature, publications, manuals, and international standards.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference59 articles.

1. Mayer, L.A., Paton, M., Gee, L., Gardner, S.V., and Ware, C. (2000, January 11–14). Interactive 3-D visualization: A tool for seafloor navigation, exploration and engineering. Proceedings of the OCEANS 2000 MTS/IEEE Conference and Exhibition, Providence, RI, USA.

2. State of the art in swath bathymetry survey systems;Moustier;IHR,1988

3. International Marine Contractors Association IMCA (2015). Guidelines for the Use of Multibeam Echosounder for Offshore Surveys, IMCA. IMCA S 003 Rev. 2.

4. Introducing an Operational Multi-Beam Array Sonar;Morris;IHR,1970

5. The Evolution of Technology for Multibeam Echo Sounding;Ranger. J. Def. Surv. Assoc.,2005

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