Evaluating an Inland Waterway Cargo Vessel’s Energy Efficiency Indices

Author:

Kalajdžić Milan1,Vasilev Matija2,Momčilović Nikola1

Affiliation:

1. University of Belgrade , Faculty of Mechanical Engineering, Department of Naval Architecture , Belgrade , Serbia

2. Ocean Pro Marine Engineers LTD , Belgrade , Serbia

Abstract

Abstract Although the International Maritime Organization (IMO) introduced the energy efficiency requirements for ships more than a decade ago, to date, inland navigation has not been affected by corresponding regulations at all. Therefore, inland waterway vessels are left with no mandatory requirements that could push their technology into more energy efficient design. Fortunately, there are certain pioneering attempts to define energy efficiency criteria for inland vessels. This paper tries to gather and provide a review of such methods. Moreover, a typical Danube cargo inland vessel’s data are used to evaluate their current energy efficiency levels with respect to provisional criteria. Consequently, two methods are found and used here. They are both based on IMO’s energy efficiency concept but modified for the inland waterway vessels. The methods delivered a significant difference in applicability and were difficult to compare. Moreover, shallow and deep-water effects are explored in the same regard but provided unsound conclusions. The final results displayed discrepancies in energy efficiency levels for the same vessels and so the methodology should be improved and harmonised, if it is to be introduced as mandatory for inland waterway vessels. The analysis provided a glimpse into the current condition of the traditional design of the Danube inland fleet, with respect to the emerging energy efficiency policies.

Publisher

Walter de Gruyter GmbH

Subject

Mechanical Engineering,Ocean Engineering

Reference18 articles.

1. 1. IMO MEPC, “Resolution MEPC.203(62) – Amendments to the Annex of the Protocol of 1997 to amend the International Convention for the prevention of pollution from ships, 1973, as modified by the protocol of 1978 relating thereto.”, International Maritime Organization (IMO), 2011/07/15. 2011. [Online]. Available: https://wwwcdn.imo.org/localresources/en/OurWork/Environment/Documents/Technical%20and%20Operational%20Measures/Resolution%20MEPC.203%2862%29.pdf. [Accessed: March 5, 2022].

2. 2. IMO MEPC, “Resolution MEPC.304(72) – Initial IMO strategy on reduction of GHG emissions from ships”, International Maritime Organization (IMO), 2018/04/13. 2018. [Online]. Available: https://wwwcdn.imo.org/localresources/en/KnowledgeCentre/IndexofIMOResolutions/MEPCDocuments/MEPC.304(72).pdf. [Accessed: March 5, 2022].

3. 3. IMO ISWG-GHG, “Draft report of the eighth meeting of the Intersessional Working Group on Reduction of GHG Emissions from Ships (ISWG-GHG 8)”, International Maritime Organization (IMO), Norway, 2021/05/28, 2021.

4. 4. M. Kalajdžić and N. Momčilović, “A Step Toward the Preliminary Design of Seagoing Multi-Purpose Cargo Vessels”, Brodogradnja/Shipbuilding, Vol. 71, No. 2, pp 75-89, 2020. doi: 10.21278/brod71205.

5. 5. M. Kalajdžić, M. Vasilev and N. Momčilović, “Exploring an Effect of Novel IMO Policies on Energy Efficiency of Existing Ships”, 1st Kotor International Maritime Conference (KIMC2021), Kotor, Montenegro, 27-28 November, 2021.

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